-
1
-
-
33845768982
-
Dosage compensation: The beginning and end of generalization
-
T. Straub, and P.B. Becker Dosage compensation: the beginning and end of generalization Nat. Rev. Genet. 8 2007 47 57
-
(2007)
Nat. Rev. Genet.
, vol.8
, pp. 47-57
-
-
Straub, T.1
Becker, P.B.2
-
2
-
-
79955052332
-
RNA-mediated silencing mechanisms in mammalian cells
-
A. Wutz RNA-mediated silencing mechanisms in mammalian cells Prog. Mol. Biol. Transl Sci. 101 2011 351 376
-
(2011)
Prog. Mol. Biol. Transl Sci.
, vol.101
, pp. 351-376
-
-
Wutz, A.1
-
3
-
-
66349100230
-
RoX RNAs: Non-coding regulators of the male X chromosome in flies
-
I. Ilik, and A. Akhtar roX RNAs: non-coding regulators of the male X chromosome in flies RNA Biol. 6 2009 113 121
-
(2009)
RNA Biol.
, vol.6
, pp. 113-121
-
-
Ilik, I.1
Akhtar, A.2
-
4
-
-
0026489906
-
The product of the mouse Xist gene is a 15 kb inactive X-specific transcript containing no conserved ORF and located in the nucleus
-
N. Brockdorff, A. Ashworth, G.F. Kay, V.M. McCabe, D.P. Norris, P.J. Cooper, S. Swift, and S. Rastan The product of the mouse Xist gene is a 15 kb inactive X-specific transcript containing no conserved ORF and located in the nucleus Cell 71 1992 515 526
-
(1992)
Cell
, vol.71
, pp. 515-526
-
-
Brockdorff, N.1
Ashworth, A.2
Kay, G.F.3
McCabe, V.M.4
Norris, D.P.5
Cooper, P.J.6
Swift, S.7
Rastan, S.8
-
5
-
-
0033166348
-
The rox1 and rox2 RNAs are essential components of the compensasome, which mediates dosage compensation in Drosophila
-
A. Franke, and B.S. Baker The rox1 and rox2 RNAs are essential components of the compensasome, which mediates dosage compensation in Drosophila Mol. Cell. 4 1999 117 122
-
(1999)
Mol. Cell.
, vol.4
, pp. 117-122
-
-
Franke, A.1
Baker, B.S.2
-
6
-
-
7144223296
-
Gene action in X-Chromosome of mouse (Mus musculus L)
-
M.F. Lyon Gene action in X-Chromosome of mouse (Mus musculus L) Nature 190 1961 372
-
(1961)
Nature
, vol.190
, pp. 372
-
-
Lyon, M.F.1
-
7
-
-
0001363327
-
Sex chromatin and gene action in mammalian X-Chromosome
-
M.F. Lyon Sex chromatin and gene action in mammalian X-Chromosome Am. J. Hum. Genet. 14 1962 135
-
(1962)
Am. J. Hum. Genet.
, vol.14
, pp. 135
-
-
Lyon, M.F.1
-
8
-
-
82255192364
-
Evidence for compensatory upregulation of expressed X-linked genes in mammals, Caenorhabditis elegans and Drosophila melanogaster
-
X. Deng, J.B. Hiatt, D.K. Nguyen, S. Ercan, D. Sturgill, L.W. Hillier, F. Schlesinger, C.A. Davis, V.J. Reinke, T.R. Gingeras, J. Shendure, R.H. Waterston, B. Oliver, J.D. Lieb, and C.M. Disteche Evidence for compensatory upregulation of expressed X-linked genes in mammals, Caenorhabditis elegans and Drosophila melanogaster Nat. Genet. 43 2011 1179 1185
-
(2011)
Nat. Genet.
, vol.43
, pp. 1179-1185
-
-
Deng, X.1
Hiatt, J.B.2
Nguyen, D.K.3
Ercan, S.4
Sturgill, D.5
Hillier, L.W.6
Schlesinger, F.7
Davis, C.A.8
Reinke, V.J.9
Gingeras, T.R.10
Shendure, J.11
Waterston, R.H.12
Oliver, B.13
Lieb, J.D.14
Disteche, C.M.15
-
9
-
-
0037324676
-
Multiple elements within the Xic regulate random X inactivation in mice
-
P. Clerc, and P. Avner Multiple elements within the Xic regulate random X inactivation in mice Semin. Cell Dev. Biol. 14 2003 85 92
-
(2003)
Semin. Cell Dev. Biol.
, vol.14
, pp. 85-92
-
-
Clerc, P.1
Avner, P.2
-
10
-
-
24344454298
-
Delving into the diversity of facultative heterochromatin: The epigenetics of the inactive X chromosome
-
E. Heard Delving into the diversity of facultative heterochromatin: the epigenetics of the inactive X chromosome Curr. Opin. Genet. Dev. 15 2005 482 489
-
(2005)
Curr. Opin. Genet. Dev.
, vol.15
, pp. 482-489
-
-
Heard, E.1
-
11
-
-
0025829449
-
Characterization of a murine gene expressed from the inactive X chromosome
-
G. Borsani, R. Tonlorenzi, M.C. Simmler, L. Dandolo, D. Arnaud, V. Capra, M. Grompe, A. Pizzuti, D. Muzny, C. Lawrence, H.F. Willard, P. Avner, and A. Ballabio Characterization of a murine gene expressed from the inactive X chromosome Nature 351 1991 325 329
-
(1991)
Nature
, vol.351
, pp. 325-329
-
-
Borsani, G.1
Tonlorenzi, R.2
Simmler, M.C.3
Dandolo, L.4
Arnaud, D.5
Capra, V.6
Grompe, M.7
Pizzuti, A.8
Muzny, D.9
Lawrence, C.10
Willard, H.F.11
Avner, P.12
Ballabio, A.13
-
12
-
-
0025961771
-
A gene from the region of the human X inactivation centre is expressed exclusively from the inactive X chromosome
-
C.J. Brown, A. Ballabio, J.L. Rupert, R.G. Lafreniere, M. Grompe, R. Tonlorenzi, and H.F. Willard A gene from the region of the human X inactivation centre is expressed exclusively from the inactive X chromosome Nature 349 1991 38 44
-
(1991)
Nature
, vol.349
, pp. 38-44
-
-
Brown, C.J.1
Ballabio, A.2
Rupert, J.L.3
Lafreniere, R.G.4
Grompe, M.5
Tonlorenzi, R.6
Willard, H.F.7
-
13
-
-
0030026001
-
Requirement for Xist in X chromosome inactivation
-
G.D. Penny, G.F. Kay, S.A. Sheardown, S. Rastan, and N. Brockdorff Requirement for Xist in X chromosome inactivation Nature 379 1996 131 137
-
(1996)
Nature
, vol.379
, pp. 131-137
-
-
Penny, G.D.1
Kay, G.F.2
Sheardown, S.A.3
Rastan, S.4
Brockdorff, N.5
-
14
-
-
0031044166
-
Xist-deficient mice are defective in dosage compensation but not spermatogenesis
-
Y. Marahrens, B. Panning, J. Dausman, W. Strauss, and R. Jaenisch Xist-deficient mice are defective in dosage compensation but not spermatogenesis Genes Dev. 11 1997 156 166
-
(1997)
Genes Dev.
, vol.11
, pp. 156-166
-
-
Marahrens, Y.1
Panning, B.2
Dausman, J.3
Strauss, W.4
Jaenisch, R.5
-
15
-
-
0033637110
-
A shift from reversible to irreversible X inactivation is triggered during ES cell differentiation
-
A. Wutz, and R. Jaenisch A shift from reversible to irreversible X inactivation is triggered during ES cell differentiation Mol. Cell 5 2000 695 705
-
(2000)
Mol. Cell
, vol.5
, pp. 695-705
-
-
Wutz, A.1
Jaenisch, R.2
-
16
-
-
52249096815
-
Molecular coupling of Xist regulation and pluripotency
-
P. Navarro, I. Chambers, V. Karwacki-Neisius, C. Chureau, C. Morey, C. Rougeulle, and P. Avner Molecular coupling of Xist regulation and pluripotency Science 321 2008 1693 1695
-
(2008)
Science
, vol.321
, pp. 1693-1695
-
-
Navarro, P.1
Chambers, I.2
Karwacki-Neisius, V.3
Chureau, C.4
Morey, C.5
Rougeulle, C.6
Avner, P.7
-
17
-
-
22344451854
-
Tsix transcription across the Xist gene alters chromatin conformation without affecting Xist transcription: Implications for X-chromosome inactivation
-
P. Navarro, S. Pichard, C. Ciaudo, P. Avner, and C. Rougeulle Tsix transcription across the Xist gene alters chromatin conformation without affecting Xist transcription: implications for X-chromosome inactivation Genes Dev. 19 2005 1474 1484
-
(2005)
Genes Dev.
, vol.19
, pp. 1474-1484
-
-
Navarro, P.1
Pichard, S.2
Ciaudo, C.3
Avner, P.4
Rougeulle, C.5
-
18
-
-
21344460496
-
Tsix silences Xist through modification of chromatin structure
-
T. Sado, Y. Hoki, and H. Sasaki Tsix silences Xist through modification of chromatin structure Dev. Cell. 9 2005 159 165
-
(2005)
Dev. Cell.
, vol.9
, pp. 159-165
-
-
Sado, T.1
Hoki, Y.2
Sasaki, H.3
-
19
-
-
33344461310
-
A transient heterochromatic state in Xist preempts X inactivation choice without RNA stabilization
-
B.K. Sun, A.M. Deaton, and J.T. Lee A transient heterochromatic state in Xist preempts X inactivation choice without RNA stabilization Mol. Cell. 21 2006 617 628
-
(2006)
Mol. Cell.
, vol.21
, pp. 617-628
-
-
Sun, B.K.1
Deaton, A.M.2
Lee, J.T.3
-
20
-
-
78751698195
-
Ftx is a non-coding RNA which affects Xist expression and chromatin structure within the X-inactivation center region
-
C. Chureau, S. Chantalat, A. Romito, A. Galvani, L. Duret, P. Avner, and C. Rougeulle Ftx is a non-coding RNA which affects Xist expression and chromatin structure within the X-inactivation center region Hum. Mol. Genet. 20 2011 705 718
-
(2011)
Hum. Mol. Genet.
, vol.20
, pp. 705-718
-
-
Chureau, C.1
Chantalat, S.2
Romito, A.3
Galvani, A.4
Duret, L.5
Avner, P.6
Rougeulle, C.7
-
21
-
-
77958472025
-
The long noncoding RNA, Jpx, is a molecular switch for X chromosome inactivation
-
D. Tian, S. Sun, and J.T. Lee The long noncoding RNA, Jpx, is a molecular switch for X chromosome inactivation Cell 143 2010 390 403
-
(2010)
Cell
, vol.143
, pp. 390-403
-
-
Tian, D.1
Sun, S.2
Lee, J.T.3
-
22
-
-
84860390087
-
Lineage-specific function of the noncoding Tsix RNA for Xist repression and Xi reactivation in mice
-
T. Ohhata, C.E. Senner, M. Hemberger, and A. Wutz Lineage-specific function of the noncoding Tsix RNA for Xist repression and Xi reactivation in mice Genes Dev. 25 2011 1702 1715
-
(2011)
Genes Dev.
, vol.25
, pp. 1702-1715
-
-
Ohhata, T.1
Senner, C.E.2
Hemberger, M.3
Wutz, A.4
-
23
-
-
36849038994
-
Sensing X chromosome pairs before X inactivation via a novel X-pairing region of the Xic
-
S. Augui, G.J. Filion, S. Huart, E. Nora, M. Guggiari, M. Maresca, A.F. Stewart, and E. Heard Sensing X chromosome pairs before X inactivation via a novel X-pairing region of the Xic Science 318 2007 1632 1636
-
(2007)
Science
, vol.318
, pp. 1632-1636
-
-
Augui, S.1
Filion, G.J.2
Huart, S.3
Nora, E.4
Guggiari, M.5
Maresca, M.6
Stewart, A.F.7
Heard, E.8
-
24
-
-
70449840392
-
RNF12 is an X-Encoded Dose-dependent activator of X chromosome inactivation
-
I. Jonkers, T.S. Barakat, E.M. Achame, K. Monkhorst, A. Kenter, E. Rentmeester, F. Grosveld, J.A. Grootegoed, and J. Gribnau RNF12 is an X-Encoded Dose-dependent activator of X chromosome inactivation Cell 139 2009 999 1011
-
(2009)
Cell
, vol.139
, pp. 999-1011
-
-
Jonkers, I.1
Barakat, T.S.2
Achame, E.M.3
Monkhorst, K.4
Kenter, A.5
Rentmeester, E.6
Grosveld, F.7
Grootegoed, J.A.8
Gribnau, J.9
-
25
-
-
79961021989
-
The X-inactivation trans-activator Rnf12 is negatively regulated by pluripotency factors in embryonic stem cells
-
P. Navarro, M. Moffat, N.P. Mullin, and I. Chambers The X-inactivation trans-activator Rnf12 is negatively regulated by pluripotency factors in embryonic stem cells Hum. Genet. 130 2011 255 264
-
(2011)
Hum. Genet.
, vol.130
, pp. 255-264
-
-
Navarro, P.1
Moffat, M.2
Mullin, N.P.3
Chambers, I.4
-
26
-
-
79851493511
-
RNF12 activates Xist and is essential for X chromosome inactivation
-
T.S. Barakat, N. Gunhanlar, C.G. Pardo, E.M. Achame, M. Ghazvini, R. Boers, A. Kenter, E. Rentmeester, J.A. Grootegoed, and J. Gribnau RNF12 activates Xist and is essential for X chromosome inactivation PLoS Genet. 7 2011
-
(2011)
PLoS Genet.
, vol.7
-
-
Barakat, T.S.1
Gunhanlar, N.2
Pardo, C.G.3
Achame, E.M.4
Ghazvini, M.5
Boers, R.6
Kenter, A.7
Rentmeester, E.8
Grootegoed, J.A.9
Gribnau, J.10
-
27
-
-
79955593163
-
New lessons from random X-Chromosome inactivation in the mouse
-
P. Clerc, and P. Avner New lessons from random X-Chromosome inactivation in the mouse J. Mol. Biol. 409 2011 62 69
-
(2011)
J. Mol. Biol.
, vol.409
, pp. 62-69
-
-
Clerc, P.1
Avner, P.2
-
28
-
-
33644751726
-
Transient colocalization of X-inactivation centres accompanies the initiation of X inactivation
-
C.P. Bacher, M. Guggiari, B. Brors, S. Augui, P. Clerc, P. Avner, R. Eils, and E. Heard Transient colocalization of X-inactivation centres accompanies the initiation of X inactivation Nat. Cell Biol. 8 2006 293 299
-
(2006)
Nat. Cell Biol.
, vol.8
, pp. 293-299
-
-
Bacher, C.P.1
Guggiari, M.2
Brors, B.3
Augui, S.4
Clerc, P.5
Avner, P.6
Eils, R.7
Heard, E.8
-
29
-
-
33644557773
-
Transient homologous chromosome pairing marks the onset of X inactivation
-
N. Xu, C.L. Tsai, and J.T. Lee Transient homologous chromosome pairing marks the onset of X inactivation Science 311 2006 1149 1152
-
(2006)
Science
, vol.311
, pp. 1149-1152
-
-
Xu, N.1
Tsai, C.L.2
Lee, J.T.3
-
30
-
-
35649000946
-
Evidence that homologous X-chromosome pairing requires transcription and Ctcf protein
-
N. Xu, M.E. Donohoe, S.S. Silva, and J.T. Lee Evidence that homologous X-chromosome pairing requires transcription and Ctcf protein Nat. Genet. 39 2007 1390 1396
-
(2007)
Nat. Genet.
, vol.39
, pp. 1390-1396
-
-
Xu, N.1
Donohoe, M.E.2
Silva, S.S.3
Lee, J.T.4
-
31
-
-
79955540235
-
Live-cell chromosome dynamics and outcome of X chromosome pairing events during ES cell differentiation
-
O. Masui, I. Bonnet, P. Le Baccon, I. Brito, T. Pollex, N. Murphy, P. Hupe, E. Barillot, A.S. Belmont, and E. Heard Live-cell chromosome dynamics and outcome of X chromosome pairing events during ES cell differentiation Cell 145 2011 447 458
-
(2011)
Cell
, vol.145
, pp. 447-458
-
-
Masui, O.1
Bonnet, I.2
Le Baccon, P.3
Brito, I.4
Pollex, T.5
Murphy, N.6
Hupe, P.7
Barillot, E.8
Belmont, A.S.9
Heard, E.10
-
32
-
-
0025829449
-
Characterization of a murine gene expressed from the inactive X-chromosome
-
G. Borsani, R. Tonlorenzi, M.C. Simmler, L. Dandolo, D. Arnaud, V. Capra, M. Grompe, A. Pizzuti, D. Muzny, C. Lawrence, H.F. Willard, P. Avner, and A. Ballabio Characterization of a murine gene expressed from the inactive X-chromosome Nature 351 1991 325 329
-
(1991)
Nature
, vol.351
, pp. 325-329
-
-
Borsani, G.1
Tonlorenzi, R.2
Simmler, M.C.3
Dandolo, L.4
Arnaud, D.5
Capra, V.6
Grompe, M.7
Pizzuti, A.8
Muzny, D.9
Lawrence, C.10
Willard, H.F.11
Avner, P.12
Ballabio, A.13
-
33
-
-
34347273047
-
XIST RNA exhibits nuclear retention and exhibits reduced association with the export factor TAP/NXF1
-
H.R. Cohen, and B. Panning XIST RNA exhibits nuclear retention and exhibits reduced association with the export factor TAP/NXF1 Chromosoma 116 2007 373 383
-
(2007)
Chromosoma
, vol.116
, pp. 373-383
-
-
Cohen, H.R.1
Panning, B.2
-
34
-
-
0026456701
-
The human Xist gene - Analysis of a 17 Kb inactive X-specific RNA that contains conserved repeats and is highly localized within the nucleus
-
C.J. Brown, B.D. Hendrich, J.L. Rupert, R.G. Lafreniere, Y. Xing, J. Lawrence, and H.F. Willard The human Xist gene - analysis of a 17 Kb inactive X-specific RNA that contains conserved repeats and is highly localized within the nucleus Cell 71 1992 527 542
-
(1992)
Cell
, vol.71
, pp. 527-542
-
-
Brown, C.J.1
Hendrich, B.D.2
Rupert, J.L.3
Lafreniere, R.G.4
Xing, Y.5
Lawrence, J.6
Willard, H.F.7
-
35
-
-
0842303342
-
The lyon and the LINE hypothesis
-
M.F. Lyon The lyon and the LINE hypothesis Semin. Cell Dev. Biol. 14 2003 313 318
-
(2003)
Semin. Cell Dev. Biol.
, vol.14
, pp. 313-318
-
-
Lyon, M.F.1
-
36
-
-
33646743585
-
Attenuated spread of X-inactivation in an X;autosome translocation
-
B.C. Popova, T. Tada, N. Takagi, N. Brockdorff, and T.B. Nesterova Attenuated spread of X-inactivation in an X;autosome translocation Proc. Natl. Acad. Sci. USA 103 2006 7706 7711
-
(2006)
Proc. Natl. Acad. Sci. USA
, vol.103
, pp. 7706-7711
-
-
Popova, B.C.1
Tada, T.2
Takagi, N.3
Brockdorff, N.4
Nesterova, T.B.5
-
37
-
-
51349109658
-
Xist RNA is confined to the nuclear territory of the silenced X chromosome throughout the cell cycle
-
I. Jonkers, K. Monkhorst, E. Rentmeester, J.A. Grootegoed, F. Grosveld, and J. Gribnau Xist RNA is confined to the nuclear territory of the silenced X chromosome throughout the cell cycle Mol. Cell Biol. 28 2008 5583 5594
-
(2008)
Mol. Cell Biol.
, vol.28
, pp. 5583-5594
-
-
Jonkers, I.1
Monkhorst, K.2
Rentmeester, E.3
Grootegoed, J.A.4
Grosveld, F.5
Gribnau, J.6
-
38
-
-
77953703353
-
LINE-1 activity in facultative heterochromatin formation during X chromosome inactivation
-
J.C. Chow, C. Ciaudo, M.J. Fazzari, N. Mise, N. Servant, J.L. Glass, M. Attreed, P. Avner, A. Wutz, E. Barillot, J.M. Greally, O. Voinnet, and E. Heard LINE-1 activity in facultative heterochromatin formation during X chromosome inactivation Cell 141 2010 956 969
-
(2010)
Cell
, vol.141
, pp. 956-969
-
-
Chow, J.C.1
Ciaudo, C.2
Fazzari, M.J.3
Mise, N.4
Servant, N.5
Glass, J.L.6
Attreed, M.7
Avner, P.8
Wutz, A.9
Barillot, E.10
Greally, J.M.11
Voinnet, O.12
Heard, E.13
-
39
-
-
79960316991
-
A system for imaging the regulatory noncoding Xist RNA in living mouse embryonic stem cells
-
K. Ng, N. Daigle, A. Bancaud, T. Ohhata, P. Humphreys, R. Walker, J. Ellenberg, and A. Wutz A system for imaging the regulatory noncoding Xist RNA in living mouse embryonic stem cells Mol. Biol. Cell 22 2011 2634 2645
-
(2011)
Mol. Biol. Cell
, vol.22
, pp. 2634-2645
-
-
Ng, K.1
Daigle, N.2
Bancaud, A.3
Ohhata, T.4
Humphreys, P.5
Walker, R.6
Ellenberg, J.7
Wutz, A.8
-
40
-
-
33746076412
-
A novel role for Xist RNA in the formation of a repressive nuclear compartment into which genes are recruited when silenced
-
J. Chaumeil, P. Le Baccon, A. Wutz, and E. Heard A novel role for Xist RNA in the formation of a repressive nuclear compartment into which genes are recruited when silenced Genes Dev. 20 2006 2223 2237
-
(2006)
Genes Dev.
, vol.20
, pp. 2223-2237
-
-
Chaumeil, J.1
Le Baccon, P.2
Wutz, A.3
Heard, E.4
-
41
-
-
0344530944
-
Integrated kinetics of X chromosome inactivation in differentiating embryonic stem cells
-
J. Chaumeil, I. Okamoto, M. Guggiari, and E. Heard Integrated kinetics of X chromosome inactivation in differentiating embryonic stem cells Cytogenet. Genome Res. 99 2002 75 84
-
(2002)
Cytogenet. Genome Res.
, vol.99
, pp. 75-84
-
-
Chaumeil, J.1
Okamoto, I.2
Guggiari, M.3
Heard, E.4
-
42
-
-
79961090805
-
Evolutionary diversity and developmental regulation of X-chromosome inactivation
-
M. Escamilla-Del-Arenal, S.T. da Rocha, and E. Heard Evolutionary diversity and developmental regulation of X-chromosome inactivation Hum. Genet. 130 2011 307 327
-
(2011)
Hum. Genet.
, vol.130
, pp. 307-327
-
-
Escamilla-Del-Arenal, M.1
Da Rocha, S.T.2
Heard, E.3
-
43
-
-
0036073174
-
Comparative sequence analysis of the X-inactivation center region in mouse, human, and bovine
-
C. Chureau, M. Prissette, A. Bourdet, V. Barbe, L. Cattolico, L. Jones, A. Eggen, P. Avner, and L. Duret Comparative sequence analysis of the X-inactivation center region in mouse, human, and bovine Genome Res. 12 2002 894 908
-
(2002)
Genome Res.
, vol.12
, pp. 894-908
-
-
Chureau, C.1
Prissette, M.2
Bourdet, A.3
Barbe, V.4
Cattolico, L.5
Jones, L.6
Eggen, A.7
Avner, P.8
Duret, L.9
-
44
-
-
0030775149
-
Regulatory elements in the minimal promoter region of the mouse Xist gene
-
S.A. Sheardown, A.E.T. Newall, D.P. Norris, S. Rastan, and N. Brockdorff Regulatory elements in the minimal promoter region of the mouse Xist gene Gene 203 1997 159 168
-
(1997)
Gene
, vol.203
, pp. 159-168
-
-
Sheardown, S.A.1
Newall, A.E.T.2
Norris, D.P.3
Rastan, S.4
Brockdorff, N.5
-
45
-
-
0344226379
-
A 94 kb genomic sequence 3' to the murine Xist gene reveals an at rich region containing a new testis specific gene Tsx
-
M.C. Simmler, D.B. Cunningham, P. Clerc, T. Vermat, B. Caudron, C. Cruaud, A. Pawlak, C. Szpirer, J. Weissenbach, J.M. Claverie, and P. Avner A 94 kb genomic sequence 3' to the murine Xist gene reveals an AT rich region containing a new testis specific gene Tsx Hum. Mol. Genet. 5 1996 1713 1726
-
(1996)
Hum. Mol. Genet.
, vol.5
, pp. 1713-1726
-
-
Simmler, M.C.1
Cunningham, D.B.2
Clerc, P.3
Vermat, T.4
Caudron, B.5
Cruaud, C.6
Pawlak, A.7
Szpirer, C.8
Weissenbach, J.9
Claverie, J.M.10
Avner, P.11
-
46
-
-
34548627662
-
A cross-species comparison of X-chromosome inactivation in Euteria
-
Z.C. Yen, I.M. Meyer, S. Karalic, and C.J. Brown A cross-species comparison of X-chromosome inactivation in Euteria Genomics 90 2007 453 463
-
(2007)
Genomics
, vol.90
, pp. 453-463
-
-
Yen, Z.C.1
Meyer, I.M.2
Karalic, S.3
Brown, C.J.4
-
47
-
-
0036479009
-
Chromosomal silencing and localization are mediated by different domains of Xist RNA
-
A. Wutz, T.P. Rasmussen, and R. Jaenisch Chromosomal silencing and localization are mediated by different domains of Xist RNA Nat. Genet. 30 2002 167 174
-
(2002)
Nat. Genet.
, vol.30
, pp. 167-174
-
-
Wutz, A.1
Rasmussen, T.P.2
Jaenisch, R.3
-
48
-
-
78650675579
-
Locked nucleic acids (LNAs) reveal sequence requirements and kinetics of Xist RNA localization to the X chromosome
-
K. Sarma, P. Levasseur, A. Aristarkhov, and J.T. Lee Locked nucleic acids (LNAs) reveal sequence requirements and kinetics of Xist RNA localization to the X chromosome Proc. Natl. Acad. Sci. USA 107 2010 22196 22201
-
(2010)
Proc. Natl. Acad. Sci. USA
, vol.107
, pp. 22196-22201
-
-
Sarma, K.1
Levasseur, P.2
Aristarkhov, A.3
Lee, J.T.4
-
49
-
-
79959948197
-
YY1 tethers Xist RNA to the inactive X nucleation center
-
Y. Jeon, and J.T. Lee YY1 tethers Xist RNA to the inactive X nucleation center Cell 146 2011 119 133
-
(2011)
Cell
, vol.146
, pp. 119-133
-
-
Jeon, Y.1
Lee, J.T.2
-
50
-
-
60749087716
-
A proximal conserved repeat in the Xist gene is essential as a genomic element for X-inactivation in mouse
-
Y. Hoki, N. Kimura, M. Kanbayashi, Y. Amakawa, T. Ohhata, H. Sasaki, and T. Sado A proximal conserved repeat in the Xist gene is essential as a genomic element for X-inactivation in mouse Development 136 2009 139 146
-
(2009)
Development
, vol.136
, pp. 139-146
-
-
Hoki, Y.1
Kimura, N.2
Kanbayashi, M.3
Amakawa, Y.4
Ohhata, T.5
Sasaki, H.6
Sado, T.7
-
51
-
-
0030034051
-
XIST RNA paints the inactive X chromosome at interphase: Evidence for a novel RNA involved in nuclear chromosome structure
-
C.M. Clemson, J.A. McNeil, H.F. Willard, and J.B. Lawrence XIST RNA paints the inactive X chromosome at interphase: evidence for a novel RNA involved in nuclear chromosome structure J. Cell Biol. 132 1996 259 275
-
(1996)
J. Cell Biol.
, vol.132
, pp. 259-275
-
-
Clemson, C.M.1
McNeil, J.A.2
Willard, H.F.3
Lawrence, J.B.4
-
52
-
-
12544256562
-
A stable proteinaceous structure in the territory of inactive X chromosomes
-
F.O. Fackelmayer A stable proteinaceous structure in the territory of inactive X chromosomes J. Biol. Chem. 280 2005 1720 1723
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 1720-1723
-
-
Fackelmayer, F.O.1
-
53
-
-
77950354829
-
The Trithorax group protein Ash2l and Saf-A are recruited to the inactive X chromosome at the onset of stable X inactivation
-
D. Pullirsch, R. Hartel, H. Kishimoto, M. Leeb, G. Steiner, and A. Wutz The Trithorax group protein Ash2l and Saf-A are recruited to the inactive X chromosome at the onset of stable X inactivation Development 137 2010 935 943
-
(2010)
Development
, vol.137
, pp. 935-943
-
-
Pullirsch, D.1
Hartel, R.2
Kishimoto, H.3
Leeb, M.4
Steiner, G.5
Wutz, A.6
-
54
-
-
0347355216
-
Scaffold attachment factor A (SAF-A) is concentrated in inactive X chromosome territories through its RGG domain
-
R. Helbig, and F.O. Fackelmayer Scaffold attachment factor A (SAF-A) is concentrated in inactive X chromosome territories through its RGG domain Chromosoma 112 2003 173 182
-
(2003)
Chromosoma
, vol.112
, pp. 173-182
-
-
Helbig, R.1
Fackelmayer, F.O.2
-
55
-
-
77956607961
-
The matrix protein hnRNP U is required for chromosomal localization of Xist RNA
-
Y. Hasegawa, N. Brockdorff, S. Kawano, K. Tsutui, K. Tsutui, and S. Nakagawa The matrix protein hnRNP U is required for chromosomal localization of Xist RNA Dev. Cell 19 2010 469 476
-
(2010)
Dev. Cell
, vol.19
, pp. 469-476
-
-
Hasegawa, Y.1
Brockdorff, N.2
Kawano, S.3
Tsutui, K.4
Tsutui, K.5
Nakagawa, S.6
-
56
-
-
33845969545
-
Identification of a Ctcf cofactor, Yy1, for the X chromosome binary switch
-
M.E. Donohoe, L.F. Zhang, N. Xu, Y. Shi, and J.T. Lee Identification of a Ctcf cofactor, Yy1, for the X chromosome binary switch Mol. Cell 25 2007 43 56
-
(2007)
Mol. Cell
, vol.25
, pp. 43-56
-
-
Donohoe, M.E.1
Zhang, L.F.2
Xu, N.3
Shi, Y.4
Lee, J.T.5
-
57
-
-
67650076211
-
The pluripotency factor Oct4 interacts with Ctcf and also controls X-chromosome pairing and counting
-
M.E. Donohoe, S.S. Silva, S.F. Pinter, N. Xu, and J.T. Lee The pluripotency factor Oct4 interacts with Ctcf and also controls X-chromosome pairing and counting Nature 460 2009 128 U147
-
(2009)
Nature
, vol.460
-
-
Donohoe, M.E.1
Silva, S.S.2
Pinter, S.F.3
Xu, N.4
Lee, J.T.5
-
58
-
-
79959952919
-
The inactive X chromosome adopts a unique three-dimensional conformation that is dependent on Xist RNA
-
E. Splinter, E. de Wit, E.P. Nora, P. Klous, H.J.G. van de Werken, Y. Zhu, L.J.T. Kaaij, W. van IJcken, J. Gribnau, E. Heard, and W. de Laat The inactive X chromosome adopts a unique three-dimensional conformation that is dependent on Xist RNA Genes Dev. 25 2011 1371 1383
-
(2011)
Genes Dev.
, vol.25
, pp. 1371-1383
-
-
Splinter, E.1
De Wit, E.2
Nora, E.P.3
Klous, P.4
Van De Werken, H.J.G.5
Zhu, Y.6
Kaaij, L.J.T.7
Van Ijcken, W.8
Gribnau, J.9
Heard, E.10
De Laat, W.11
-
59
-
-
64549153094
-
SATB1 defines the developmental context for gene silencing by Xist in Lymphoma and embryonic cells
-
R. Agrelo, A. Souabni, M. Novatchkova, C. Haslinger, M. Leeb, V. Komnenovic, H. Kishimoto, L. Gresh, T. Kohwi-Shigematsu, L. Kenner, and A. Wutz SATB1 defines the developmental context for gene silencing by Xist in Lymphoma and embryonic cells Dev. Cell 16 2009 507 516
-
(2009)
Dev. Cell
, vol.16
, pp. 507-516
-
-
Agrelo, R.1
Souabni, A.2
Novatchkova, M.3
Haslinger, C.4
Leeb, M.5
Komnenovic, V.6
Kishimoto, H.7
Gresh, L.8
Kohwi-Shigematsu, T.9
Kenner, L.10
Wutz, A.11
-
60
-
-
0026758357
-
A tissue-specific MAR/SAR DNA-binding protein with unusual binding site recognition
-
L.A. Dickinson, T. Joh, Y. Kohwi, and T. Kohwi-Shigematsu A tissue-specific MAR/SAR DNA-binding protein with unusual binding site recognition Cell 70 1992 631 645
-
(1992)
Cell
, vol.70
, pp. 631-645
-
-
Dickinson, L.A.1
Joh, T.2
Kohwi, Y.3
Kohwi-Shigematsu, T.4
-
61
-
-
0034161939
-
The MAR-binding protein SATB1 orchestrates temporal and spatial expression of multiple genes during T-cell development
-
J.D. Alvarez, D.H. Yasui, H. Niida, T. Joh, D.Y. Loh, and T. Kohwi-Shigematsu The MAR-binding protein SATB1 orchestrates temporal and spatial expression of multiple genes during T-cell development Genes Dev. 14 2000 521 535
-
(2000)
Genes Dev.
, vol.14
, pp. 521-535
-
-
Alvarez, J.D.1
Yasui, D.H.2
Niida, H.3
Joh, T.4
Loh, D.Y.5
Kohwi-Shigematsu, T.6
-
62
-
-
0038369968
-
Tissue-specific nuclear architecture and gene expession regulated by SATB1
-
S.T. Cai, H.J. Han, and T. Kohwi-Shigematsu Tissue-specific nuclear architecture and gene expession regulated by SATB1 Nat. Genet. 34 2003 42 51
-
(2003)
Nat. Genet.
, vol.34
, pp. 42-51
-
-
Cai, S.T.1
Han, H.J.2
Kohwi-Shigematsu, T.3
-
63
-
-
74549136925
-
Cancer progenitors and epigenetic contexts An Xisting connection
-
R. Agrelo, and A. Wutz Cancer progenitors and epigenetic contexts An Xisting connection Epigenetics 4 2009 568 570
-
(2009)
Epigenetics
, vol.4
, pp. 568-570
-
-
Agrelo, R.1
Wutz, A.2
-
64
-
-
0242668706
-
Role of histone H3 lysine 27 methylation in X inactivation
-
K. Plath, J. Fang, S.K. Mlynarczyk-Evans, R. Cao, K.A. Worringer, H. Wang, C.C. de la Cruz, A.P. Otte, B. Panning, and Y. Zhang Role of histone H3 lysine 27 methylation in X inactivation Science 300 2003 131 135
-
(2003)
Science
, vol.300
, pp. 131-135
-
-
Plath, K.1
Fang, J.2
Mlynarczyk-Evans, S.K.3
Cao, R.4
Worringer, K.A.5
Wang, H.6
De La Cruz, C.C.7
Otte, A.P.8
Panning, B.9
Zhang, Y.10
-
65
-
-
0037387711
-
Establishment of histone h3 methylation on the inactive X chromosome requires transient recruitment of Eed-Enx1 polycomb group complexes
-
J. Silva, W. Mak, I. Zvetkova, R. Appanah, T.B. Nesterova, Z. Webster, A.H. Peters, T. Jenuwein, A.P. Otte, and N. Brockdorff Establishment of histone h3 methylation on the inactive X chromosome requires transient recruitment of Eed-Enx1 polycomb group complexes Dev. Cell 4 2003 481 495
-
(2003)
Dev. Cell
, vol.4
, pp. 481-495
-
-
Silva, J.1
Mak, W.2
Zvetkova, I.3
Appanah, R.4
Nesterova, T.B.5
Webster, Z.6
Peters, A.H.7
Jenuwein, T.8
Otte, A.P.9
Brockdorff, N.10
-
66
-
-
68149144367
-
High-resolution analysis of epigenetic changes associated with X inactivation
-
H. Marks, J.C. Chow, S. Denissov, K.J. Francoijs, N. Brockdorff, E. Heard, and H.G. Stunnenberg High-resolution analysis of epigenetic changes associated with X inactivation Genome Res. 19 2009 1361 1373
-
(2009)
Genome Res.
, vol.19
, pp. 1361-1373
-
-
Marks, H.1
Chow, J.C.2
Denissov, S.3
Francoijs, K.J.4
Brockdorff, N.5
Heard, E.6
Stunnenberg, H.G.7
-
67
-
-
3042801308
-
SUZ12 is required for both the histone methyltransferase activity and the silencing function of the EED-EZH2 complex
-
R. Cao, and Y. Zhang SUZ12 is required for both the histone methyltransferase activity and the silencing function of the EED-EZH2 complex Mol. Cell 15 2004 57 67
-
(2004)
Mol. Cell
, vol.15
, pp. 57-67
-
-
Cao, R.1
Zhang, Y.2
-
68
-
-
55349109963
-
Polycomb proteins targeted by a short repeat RNA to the mouse X chromosome
-
J. Zhao, B.K. Sun, J.A. Erwin, J.J. Song, and J.T. Lee Polycomb proteins targeted by a short repeat RNA to the mouse X chromosome Science 322 2008 750 756
-
(2008)
Science
, vol.322
, pp. 750-756
-
-
Zhao, J.1
Sun, B.K.2
Erwin, J.A.3
Song, J.J.4
Lee, J.T.5
-
69
-
-
77953107585
-
Short RNAs are transcribed from repressed polycomb target genes and interact with polycomb repressive complex-2
-
A. Kanhere, K. Viiri, C.C. Araujo, J. Rasaiyaah, R.D. Bouwman, W.A. Whyte, C.F. Pereira, E. Brookes, K. Walker, G.W. Bell, A. Pombo, A.G. Fisher, R.A. Young, and R.G. Jenner Short RNAs are transcribed from repressed polycomb target genes and interact with polycomb repressive complex-2 Mol. Cell 38 2010 675 688
-
(2010)
Mol. Cell
, vol.38
, pp. 675-688
-
-
Kanhere, A.1
Viiri, K.2
Araujo, C.C.3
Rasaiyaah, J.4
Bouwman, R.D.5
Whyte, W.A.6
Pereira, C.F.7
Brookes, E.8
Walker, K.9
Bell, G.W.10
Pombo, A.11
Fisher, A.G.12
Young, R.A.13
Jenner, R.G.14
-
70
-
-
78649807567
-
Phosphorylation of the PRC2 component Ezh2 is cell cycle-regulated and up-regulates its binding to ncRNA
-
S. Kaneko, G. Li, J. Son, C.F. Xu, R. Margueron, T.A. Neubert, and D. Reinberg Phosphorylation of the PRC2 component Ezh2 is cell cycle-regulated and up-regulates its binding to ncRNA Genes Dev. 24 2010 2615 2620
-
(2010)
Genes Dev.
, vol.24
, pp. 2615-2620
-
-
Kaneko, S.1
Li, G.2
Son, J.3
Xu, C.F.4
Margueron, R.5
Neubert, T.A.6
Reinberg, D.7
-
71
-
-
75749124997
-
2-D structure of the A region of Xist RNA and its Implication for PRC2 association
-
S. Maenner, M. Blaud, L. Fouillen, A. Savoye, V. Marchand, A. Dubois, S. Sanglier-Cianferani, A. Van Dorsselaer, P. Clerc, P. Avner, A. Visvikis, and C. Branlant 2-D structure of the A region of Xist RNA and its Implication for PRC2 association PLoS Biol. 8 2010
-
(2010)
PLoS Biol.
, vol.8
-
-
Maenner, S.1
Blaud, M.2
Fouillen, L.3
Savoye, A.4
Marchand, V.5
Dubois, A.6
Sanglier-Cianferani, S.7
Van Dorsselaer, A.8
Clerc, P.9
Avner, P.10
Visvikis, A.11
Branlant, C.12
-
72
-
-
34250729138
-
Functional demarcation of active and silent chromatin domains in human HOX loci by noncoding RNAs
-
J.L. Rinn, M. Kertesz, J.K. Wang, S.L. Squazzo, X. Xu, S.A. Brugmann, L.H. Goodnough, J.A. Helms, P.J. Farnham, E. Segal, and H.Y. Chang Functional demarcation of active and silent chromatin domains in human HOX loci by noncoding RNAs Cell 129 2007 1311 1323
-
(2007)
Cell
, vol.129
, pp. 1311-1323
-
-
Rinn, J.L.1
Kertesz, M.2
Wang, J.K.3
Squazzo, S.L.4
Xu, X.5
Brugmann, S.A.6
Goodnough, L.H.7
Helms, J.A.8
Farnham, P.J.9
Segal, E.10
Chang, H.Y.11
-
73
-
-
77954572735
-
Long noncoding RNA as modular scaffold of histone modification complexes
-
M.C. Tsai, O. Manor, Y. Wan, N. Mosammaparast, J.K. Wang, F. Lan, Y. Shi, E. Segal, and H.Y. Chang Long noncoding RNA as modular scaffold of histone modification complexes Science 329 2010 689 693
-
(2010)
Science
, vol.329
, pp. 689-693
-
-
Tsai, M.C.1
Manor, O.2
Wan, Y.3
Mosammaparast, N.4
Wang, J.K.5
Lan, F.6
Shi, Y.7
Segal, E.8
Chang, H.Y.9
-
74
-
-
79955088437
-
The sequence, structure and evolutionary features of HOTAIR in mammals
-
S. He, S. Liu, and H. Zhu The sequence, structure and evolutionary features of HOTAIR in mammals BMC Evol. Biol. 11 2011 102
-
(2011)
BMC Evol. Biol.
, vol.11
, pp. 102
-
-
He, S.1
Liu, S.2
Zhu, H.3
-
75
-
-
67649206510
-
Drosophila dosage compensation: A complex voyage to the X chromosome
-
M.E. Gelbart, and M.I. Kuroda Drosophila dosage compensation: a complex voyage to the X chromosome Development 136 2009 1399 1410
-
(2009)
Development
, vol.136
, pp. 1399-1410
-
-
Gelbart, M.E.1
Kuroda, M.I.2
-
76
-
-
77955480155
-
The activation potential of MOF is constrained for dosage compensation
-
M. Prestel, C. Feller, T. Straub, H. Mitlohner, and P.B. Becker The activation potential of MOF is constrained for dosage compensation Mol. Cell 38 2010 815 826
-
(2010)
Mol. Cell
, vol.38
, pp. 815-826
-
-
Prestel, M.1
Feller, C.2
Straub, T.3
Mitlohner, H.4
Becker, P.B.5
-
77
-
-
0034101060
-
The mle(napts) RNA helicase mutation in Drosophila results in a splicing catastrophe of the para Na+ channel transcript in a region of RNA editing
-
R.A. Reenan, C.J. Hanrahan, and B. Ganetzky The mle(napts) RNA helicase mutation in Drosophila results in a splicing catastrophe of the para Na+ channel transcript in a region of RNA editing Neuron 25 2000 139 149
-
(2000)
Neuron
, vol.25
, pp. 139-149
-
-
Reenan, R.A.1
Hanrahan, C.J.2
Ganetzky, B.3
-
78
-
-
79959864524
-
The RING finger protein MSL2 in the MOF complex is an E3 ubiquitin ligase for H2B K34 and is involved in crosstalk with H3 K4 and K79 methylation
-
L. Wu, B.M. Zee, Y. Wang, B.A. Garcia, and Y. Dou The RING finger protein MSL2 in the MOF complex is an E3 ubiquitin ligase for H2B K34 and is involved in crosstalk with H3 K4 and K79 methylation Mol. Cell 43 2011 132 144
-
(2011)
Mol. Cell
, vol.43
, pp. 132-144
-
-
Wu, L.1
Zee, B.M.2
Wang, Y.3
Garcia, B.A.4
Dou, Y.5
-
79
-
-
0035906859
-
The JIL-1 tandem kinase mediates histone H3 phosphorylation and is required for maintenance of chromatin structure in Drosophila
-
Y. Wang, W. Zhang, Y. Jin, J. Johansen, and K.M. Johansen The JIL-1 tandem kinase mediates histone H3 phosphorylation and is required for maintenance of chromatin structure in Drosophila Cell 105 2001 433 443
-
(2001)
Cell
, vol.105
, pp. 433-443
-
-
Wang, Y.1
Zhang, W.2
Jin, Y.3
Johansen, J.4
Johansen, K.M.5
-
80
-
-
25144498611
-
The JIL-1 kinase regulates the structure of Drosophila polytene chromosomes
-
H. Deng, W. Zhang, X. Bao, J.N. Martin, J. Girton, J. Johansen, and K.M. Johansen The JIL-1 kinase regulates the structure of Drosophila polytene chromosomes Chromosoma 114 2005 173 182
-
(2005)
Chromosoma
, vol.114
, pp. 173-182
-
-
Deng, H.1
Zhang, W.2
Bao, X.3
Martin, J.N.4
Girton, J.5
Johansen, J.6
Johansen, K.M.7
-
81
-
-
57749120445
-
The COOH-terminal domain of the JIL-1 histone H3S10 kinase interacts with histone H3 and is required for correct targeting to chromatin
-
X. Bao, W. Cai, H. Deng, W. Zhang, R. Krencik, J. Girton, J. Johansen, and K.M. Johansen The COOH-terminal domain of the JIL-1 histone H3S10 kinase interacts with histone H3 and is required for correct targeting to chromatin J. Biol. Chem. 283 2008 32741 32750
-
(2008)
J. Biol. Chem.
, vol.283
, pp. 32741-32750
-
-
Bao, X.1
Cai, W.2
Deng, H.3
Zhang, W.4
Krencik, R.5
Girton, J.6
Johansen, J.7
Johansen, K.M.8
-
82
-
-
0033166349
-
JIL-1: A novel chromosomal tandem kinase implicated in transcriptional regulation in Drosophila
-
Y. Jin, Y.M. Wang, D.L. Walker, H. Dong, C. Conley, J. Johansen, and K.M. Johansen JIL-1: a novel chromosomal tandem kinase implicated in transcriptional regulation in Drosophila Mol. Cell 4 1999 129 135
-
(1999)
Mol. Cell
, vol.4
, pp. 129-135
-
-
Jin, Y.1
Wang, Y.M.2
Walker, D.L.3
Dong, H.4
Conley, C.5
Johansen, J.6
Johansen, K.M.7
-
83
-
-
0034729334
-
JIL-1, a chromosomal kinase implicated in regulation of chromatin structure, associates with the male specific lethal (MSL) dosage compensation complex
-
Y. Jin, Y. Wang, J. Johansen, and K.M. Johansen JIL-1, a chromosomal kinase implicated in regulation of chromatin structure, associates with the male specific lethal (MSL) dosage compensation complex J. Cell Biol. 149 2000 1005 1010
-
(2000)
J. Cell Biol.
, vol.149
, pp. 1005-1010
-
-
Jin, Y.1
Wang, Y.2
Johansen, J.3
Johansen, K.M.4
-
84
-
-
79953741268
-
Global analysis of the relationship between JIL-1 kinase and transcription
-
C. Regnard, T. Straub, A. Mitterweger, I.K. Dahlsveen, V. Fabian, and P.B. Becker Global analysis of the relationship between JIL-1 kinase and transcription Plos Genet. 7 2011
-
(2011)
Plos Genet.
, vol.7
-
-
Regnard, C.1
Straub, T.2
Mitterweger, A.3
Dahlsveen, I.K.4
Fabian, V.5
Becker, P.B.6
-
85
-
-
0036500632
-
The roX genes encode redundant male-specific lethal transcripts required for targeting of the MSL complex
-
V.H. Meller, and B.P. Rattner The roX genes encode redundant male-specific lethal transcripts required for targeting of the MSL complex Embo J. 21 2002 1084 1091
-
(2002)
Embo J.
, vol.21
, pp. 1084-1091
-
-
Meller, V.H.1
Rattner, B.P.2
-
86
-
-
49449085856
-
Regulation of histone H4 Lys16 acetylation by predicted alternative secondary structures in roX noncoding RNAs
-
S.W. Park, M.I. Kuroda, and Y. Park Regulation of histone H4 Lys16 acetylation by predicted alternative secondary structures in roX noncoding RNAs Mol. Cell Biol. 28 2008 4952 4962
-
(2008)
Mol. Cell Biol.
, vol.28
, pp. 4952-4962
-
-
Park, S.W.1
Kuroda, M.I.2
Park, Y.3
-
87
-
-
0030782516
-
Drosophila male-specific lethal-2 protein: Structure/function analysis and dependence on MSL-1 for chromosome association
-
L.M. Lyman, K. Copps, L. Rastelli, R.L. Kelley, and M.I. Kuroda Drosophila male-specific lethal-2 protein: structure/function analysis and dependence on MSL-1 for chromosome association Genetics 147 1997 1743 1753
-
(1997)
Genetics
, vol.147
, pp. 1743-1753
-
-
Lyman, L.M.1
Copps, K.2
Rastelli, L.3
Kelley, R.L.4
Kuroda, M.I.5
-
88
-
-
0028885520
-
The Msl-2 dosage compensation gene of Drosophila encodes a putative DNA-binding protein whose expression is sex specifically regulated by sex-lethal
-
G.J. Bashaw, and B.S. Baker The Msl-2 dosage compensation gene of Drosophila encodes a putative DNA-binding protein whose expression is sex specifically regulated by sex-lethal Development 121 1995 3245 3258
-
(1995)
Development
, vol.121
, pp. 3245-3258
-
-
Bashaw, G.J.1
Baker, B.S.2
-
89
-
-
0029063585
-
Expression of msl-2 causes assembly of dosage compensation regulators on the X chromosomes and female lethality in Drosophila
-
R.L. Kelley, I. Solovyeva, L.M. Lyman, R. Richman, V. Solovyev, and M.I. Kuroda Expression of msl-2 causes assembly of dosage compensation regulators on the X chromosomes and female lethality in Drosophila Cell 81 1995 867 877
-
(1995)
Cell
, vol.81
, pp. 867-877
-
-
Kelley, R.L.1
Solovyeva, I.2
Lyman, L.M.3
Richman, R.4
Solovyev, V.5
Kuroda, M.I.6
-
90
-
-
0029067981
-
Male-specific lethal-2, a dosage compensation gene of Drosophila, undergoes sex-specific regulation and encodes a protein with a ring finger and a metallothionein-like cysteine cluster
-
S.B. Zhou, Y.F. Yang, M.J. Scott, A. Pannuti, K.C. Fehr, A. Eisen, E.V. Koonin, D.L. Fouts, R. Wrightsman, J.E. Manning, and J.C. Lucchesi Male-specific lethal-2, a dosage compensation gene of Drosophila, undergoes sex-specific regulation and encodes a protein with a ring finger and a metallothionein-like cysteine cluster Embo J. 14 1995 2884 2895
-
(1995)
Embo J.
, vol.14
, pp. 2884-2895
-
-
Zhou, S.B.1
Yang, Y.F.2
Scott, M.J.3
Pannuti, A.4
Fehr, K.C.5
Eisen, A.6
Koonin, E.V.7
Fouts, D.L.8
Wrightsman, R.9
Manning, J.E.10
Lucchesi, J.C.11
-
91
-
-
0031894413
-
The Drosophila splicing regulator sex-lethal directly inhibits translation of male-specific-lethal 2 mRNA
-
F. Gebauer, L. Merendino, M.W. Hentze, and J. Valcarcel The Drosophila splicing regulator sex-lethal directly inhibits translation of male-specific-lethal 2 mRNA Rna 4 1998 142 150
-
(1998)
Rna
, vol.4
, pp. 142-150
-
-
Gebauer, F.1
Merendino, L.2
Hentze, M.W.3
Valcarcel, J.4
-
92
-
-
0030913367
-
Sex lethal controls dosage compensation in Drosophila by a non-splicing mechanism
-
R.L. Kelley, J.W. Wang, L. Bell, and M.I. Kuroda Sex lethal controls dosage compensation in Drosophila by a non-splicing mechanism Nature 387 1997 195 199
-
(1997)
Nature
, vol.387
, pp. 195-199
-
-
Kelley, R.L.1
Wang, J.W.2
Bell, L.3
Kuroda, M.I.4
-
93
-
-
79960954827
-
The translation initiation factor eIF4E regulates the sex-specific expression of the master switch gene Sxl in Drosophila melanogaster
-
P.L. Graham, J.L. Yanowitz, J.K. Penn, G. Deshpande, and P. Schedl The translation initiation factor eIF4E regulates the sex-specific expression of the master switch gene Sxl in Drosophila melanogaster Plos Genet. 7 2011 e1002185
-
(2011)
Plos Genet.
, vol.7
, pp. 1002185
-
-
Graham, P.L.1
Yanowitz, J.L.2
Penn, J.K.3
Deshpande, G.4
Schedl, P.5
-
94
-
-
79958276198
-
Translational control via protein-regulated upstream open reading frames
-
J. Medenbach, M. Seiler, and M.W. Hentze Translational control via protein-regulated upstream open reading frames Cell 145 2011 902 913
-
(2011)
Cell
, vol.145
, pp. 902-913
-
-
Medenbach, J.1
Seiler, M.2
Hentze, M.W.3
-
96
-
-
3543001680
-
Sequence-specific targeting of MSL complex regulates transcription of the roX RNA genes
-
X. Bai, A.A. Alekseyenko, and M.I. Kuroda Sequence-specific targeting of MSL complex regulates transcription of the roX RNA genes Embo J. 23 2004 2853 2861
-
(2004)
Embo J.
, vol.23
, pp. 2853-2861
-
-
Bai, X.1
Alekseyenko, A.A.2
Kuroda, M.I.3
-
97
-
-
2442494140
-
Drosophila male-specific lethal 2 protein controls sex-specific expression of the roX genes
-
B.P. Rattner, and V.H. Meller Drosophila male-specific lethal 2 protein controls sex-specific expression of the roX genes Genetics 166 2004 1825 1832
-
(2004)
Genetics
, vol.166
, pp. 1825-1832
-
-
Rattner, B.P.1
Meller, V.H.2
-
98
-
-
9144222721
-
MLE functions as a transcriptional regulator of the roX2 gene
-
C.G. Lee, T.W. Reichman, T. Baik, and M.B. Mathews MLE functions as a transcriptional regulator of the roX2 gene J. Biol. Chem. 279 2004 47740 47745
-
(2004)
J. Biol. Chem.
, vol.279
, pp. 47740-47745
-
-
Lee, C.G.1
Reichman, T.W.2
Baik, T.3
Mathews, M.B.4
-
99
-
-
79953163302
-
Transcription modulation chromosome-wide: Universal features and principles of dosage compensation in worms and flies
-
T. Straub, and P.B. Becker Transcription modulation chromosome-wide: universal features and principles of dosage compensation in worms and flies Curr. Opin. Genet. Dev. 21 2011 147 153
-
(2011)
Curr. Opin. Genet. Dev.
, vol.21
, pp. 147-153
-
-
Straub, T.1
Becker, P.B.2
-
100
-
-
77953695311
-
The DNA binding CXC domain of MSL2 is required for faithful targeting the dosage compensation complex to the X chromosome
-
T. Fauth, F. Muller-Planitz, C. Konig, T. Straub, and P.B. Becker The DNA binding CXC domain of MSL2 is required for faithful targeting the dosage compensation complex to the X chromosome Nucleic Acids Res. 38 2010 3209 3221
-
(2010)
Nucleic Acids Res.
, vol.38
, pp. 3209-3221
-
-
Fauth, T.1
Muller-Planitz, F.2
Konig, C.3
Straub, T.4
Becker, P.B.5
-
101
-
-
49549113199
-
A sequence motif within chromatin entry sites directs MSL establishment on the Drosophila X chromosome
-
A.A. Alekseyenko, S. Peng, E. Larschan, A.A. Gorchakov, O.K. Lee, P. Kharchenko, S.D. McGrath, C.I. Wang, E.R. Mardis, P.J. Park, and M.I. Kuroda A sequence motif within chromatin entry sites directs MSL establishment on the Drosophila X chromosome Cell 134 2008 599 609
-
(2008)
Cell
, vol.134
, pp. 599-609
-
-
Alekseyenko, A.A.1
Peng, S.2
Larschan, E.3
Gorchakov, A.A.4
Lee, O.K.5
Kharchenko, P.6
McGrath, S.D.7
Wang, C.I.8
Mardis, E.R.9
Park, P.J.10
Kuroda, M.I.11
-
102
-
-
58149165026
-
The chromosomal high-affinity binding sites for the Drosophila dosage compensation complex
-
T. Straub, C. Grimaud, G.D. Gilfillan, A. Mitterweger, and P.B. Becker The chromosomal high-affinity binding sites for the Drosophila dosage compensation complex Plos Genet. 4 2008
-
(2008)
Plos Genet.
, vol.4
-
-
Straub, T.1
Grimaud, C.2
Gilfillan, G.D.3
Mitterweger, A.4
Becker, P.B.5
-
103
-
-
70350629982
-
The dosage compensation complex shapes the conformation of the X chromosome in Drosophila
-
C. Grimaud, and P.B. Becker The dosage compensation complex shapes the conformation of the X chromosome in Drosophila Genes Dev. 23 2009 2490 2495
-
(2009)
Genes Dev.
, vol.23
, pp. 2490-2495
-
-
Grimaud, C.1
Becker, P.B.2
-
104
-
-
38949155481
-
Incorporation of the noncoding roX RNAs alters the chromatin-binding specificity of the Drosophila MSL1/MSL2 complex
-
F. Li, A.H. Schiemann, and M.J. Scott Incorporation of the noncoding roX RNAs alters the chromatin-binding specificity of the Drosophila MSL1/MSL2 complex Mol. Cell Biol. 28 2008 1252 1264
-
(2008)
Mol. Cell Biol.
, vol.28
, pp. 1252-1264
-
-
Li, F.1
Schiemann, A.H.2
Scott, M.J.3
-
105
-
-
70349627026
-
Long-range spreading of dosage compensation in Drosophila captures transcribed autosomal genes inserted on X
-
A.A. Gorchakov, A.A. Alekseyenko, P. Kharchenko, P.J. Park, and M.I. Kuroda Long-range spreading of dosage compensation in Drosophila captures transcribed autosomal genes inserted on X Genes Dev. 23 2009 2266 2271
-
(2009)
Genes Dev.
, vol.23
, pp. 2266-2271
-
-
Gorchakov, A.A.1
Alekseyenko, A.A.2
Kharchenko, P.3
Park, P.J.4
Kuroda, M.I.5
-
106
-
-
77955846726
-
MSL cis-spreading from roX gene up-regulates the neighboring genes
-
S.W. Park, H. Oh, Y.R. Lin, and Y. Park MSL cis-spreading from roX gene up-regulates the neighboring genes Biochem. Biophys. Res. Commun. 399 2010 227 231
-
(2010)
Biochem. Biophys. Res. Commun.
, vol.399
, pp. 227-231
-
-
Park, S.W.1
Oh, H.2
Lin, Y.R.3
Park, Y.4
-
107
-
-
3042541533
-
Functional integration of the histone acetyltransferase MOF into the dosage compensation complex
-
V. Morales, T. Straub, M.F. Neumann, G. Mengus, A. Akhtar, and P.B. Becker Functional integration of the histone acetyltransferase MOF into the dosage compensation complex Embo J. 23 2004 2258 2268
-
(2004)
Embo J.
, vol.23
, pp. 2258-2268
-
-
Morales, V.1
Straub, T.2
Neumann, M.F.3
Mengus, G.4
Akhtar, A.5
Becker, P.B.6
-
108
-
-
0034602829
-
MSL1 plays a central role in assembly of the MSL complex, essential for dosage compensation in Drosophila
-
M.J. Scott, L.L. Pan, S.B. Cleland, A.L. Knox, and J. Heinrich MSL1 plays a central role in assembly of the MSL complex, essential for dosage compensation in Drosophila Embo J. 19 2000 144 155
-
(2000)
Embo J.
, vol.19
, pp. 144-155
-
-
Scott, M.J.1
Pan, L.L.2
Cleland, S.B.3
Knox, A.L.4
Heinrich, J.5
-
109
-
-
79551625231
-
Structural basis for MOF and MSL3 recruitment into the dosage compensation complex by MSL1
-
J. Kadlec, E. Hallacli, M. Lipp, H. Holz, J. Sanchez-Weatherby, S. Cusack, and A. Akhtar Structural basis for MOF and MSL3 recruitment into the dosage compensation complex by MSL1 Nat. Struct. Mol. Biol. 18 2011 142 U200
-
(2011)
Nat. Struct. Mol. Biol.
, vol.18
-
-
Kadlec, J.1
Hallacli, E.2
Lipp, M.3
Holz, H.4
Sanchez-Weatherby, J.5
Cusack, S.6
Akhtar, A.7
-
110
-
-
80054756754
-
Genomic maps of long noncoding RNA occupancy reveal principles of RNA-chromatin interactions
-
C. Chu, K. Qu, F.L. Zhong, S.E. Artandi, and H.Y. Chang Genomic maps of long noncoding RNA occupancy reveal principles of RNA-chromatin interactions Mol. Cell 2011
-
(2011)
Mol. Cell
-
-
Chu, C.1
Qu, K.2
Zhong, F.L.3
Artandi, S.E.4
Chang, H.Y.5
-
111
-
-
84862908875
-
The genomic binding sites of a noncoding RNA
-
M.D. Simon, C.I. Wang, P.V. Kharchenko, J.A. West, B.A. Chapman, A.A. Alekseyenko, M.L. Borowsky, M.I. Kuroda, and R.E. Kingston The genomic binding sites of a noncoding RNA Proc. Natl. Acad. Sci. U S A 2011
-
(2011)
Proc. Natl. Acad. Sci. U S A
-
-
Simon, M.D.1
Wang, C.I.2
Kharchenko, P.V.3
West, J.A.4
Chapman, B.A.5
Alekseyenko, A.A.6
Borowsky, M.L.7
Kuroda, M.I.8
Kingston, R.E.9
-
112
-
-
0035341311
-
Association and spreading of the Drosophila dosage compensation complex from a discrete roX1 chromatin entry site
-
Y. Kageyama, G. Mengus, G. Gilfillan, H.G. Kennedy, C. Stuckenholz, R.L. Kelley, P.B. Becker, and M.I. Kuroda Association and spreading of the Drosophila dosage compensation complex from a discrete roX1 chromatin entry site Embo J. 20 2001 2236 2245
-
(2001)
Embo J.
, vol.20
, pp. 2236-2245
-
-
Kageyama, Y.1
Mengus, G.2
Gilfillan, G.3
Kennedy, H.G.4
Stuckenholz, C.5
Kelley, R.L.6
Becker, P.B.7
Kuroda, M.I.8
-
113
-
-
0033588309
-
Epigenetic spreading of the Drosophila dosage compensation complex from roX RNA genes into flanking chromatin
-
R.L. Kelley, V.H. Meller, P.R. Gordadze, G. Roman, R.L. Davis, and M.I. Kuroda Epigenetic spreading of the Drosophila dosage compensation complex from roX RNA genes into flanking chromatin Cell 98 1999 513 522
-
(1999)
Cell
, vol.98
, pp. 513-522
-
-
Kelley, R.L.1
Meller, V.H.2
Gordadze, P.R.3
Roman, G.4
Davis, R.L.5
Kuroda, M.I.6
-
114
-
-
0037623368
-
Sequence-specific targeting of Drosophila roX genes by the MSL dosage compensation complex
-
Y. Park, G. Mengus, X. Bai, Y. Kageyama, V.H. Meller, P.B. Becker, and M.I. Kuroda Sequence-specific targeting of Drosophila roX genes by the MSL dosage compensation complex Mol. Cell 11 2003 977 986
-
(2003)
Mol. Cell
, vol.11
, pp. 977-986
-
-
Park, Y.1
Mengus, G.2
Bai, X.3
Kageyama, Y.4
Meller, V.H.5
Becker, P.B.6
Kuroda, M.I.7
-
115
-
-
0342378132
-
RoX1 RNA paints the X chromosome of male Drosophila and is regulated by the dosage compensation system
-
V.H. Meller, K.H. Wu, G. Roman, M.I. Kuroda, and R.L. Davis roX1 RNA paints the X chromosome of male Drosophila and is regulated by the dosage compensation system Cell 88 1997 445 457
-
(1997)
Cell
, vol.88
, pp. 445-457
-
-
Meller, V.H.1
Wu, K.H.2
Roman, G.3
Kuroda, M.I.4
Davis, R.L.5
-
116
-
-
21744451796
-
The MRG domain mediates the functional integration of MSL3 into the dosage compensation complex
-
V. Morales, C. Regnard, A. Izzo, I. Vetter, and P.B. Becker The MRG domain mediates the functional integration of MSL3 into the dosage compensation complex Mol. Cell Biol. 25 2005 5947 5954
-
(2005)
Mol. Cell Biol.
, vol.25
, pp. 5947-5954
-
-
Morales, V.1
Regnard, C.2
Izzo, A.3
Vetter, I.4
Becker, P.B.5
-
117
-
-
39449138145
-
Structure-function analysis of the RNA helicase maleless
-
A. Izzo, C. Regnard, V. Morales, E. Kremmer, and P.B. Becker Structure-function analysis of the RNA helicase maleless Nucleic Acids Res. 36 2008 950 962
-
(2008)
Nucleic Acids Res.
, vol.36
, pp. 950-962
-
-
Izzo, A.1
Regnard, C.2
Morales, V.3
Kremmer, E.4
Becker, P.B.5
-
118
-
-
0034699391
-
Chromodomains are protein-RNA interaction modules
-
A. Akhtar, D. Zink, and P.B. Becker Chromodomains are protein-RNA interaction modules Nature 407 2000 405 409
-
(2000)
Nature
, vol.407
, pp. 405-409
-
-
Akhtar, A.1
Zink, D.2
Becker, P.B.3
-
119
-
-
0030089613
-
RNA-dependent association of the Drosophila maleless protein with the male X chromosome
-
L. Richter, J.R. Bone, and M.I. Kuroda RNA-dependent association of the Drosophila maleless protein with the male X chromosome Genes Cells 1 1996 325 336
-
(1996)
Genes Cells
, vol.1
, pp. 325-336
-
-
Richter, L.1
Bone, J.R.2
Kuroda, M.I.3
-
120
-
-
0038730928
-
MOF-Regulated acetylation of MSL-3 in the Drosophila dosage compensation complex
-
A. Buscaino, T. Kocher, J.H. Kind, H. Holz, M. Taipale, K. Wagner, M. Wilm, and A. Akhtar MOF-Regulated acetylation of MSL-3 in the Drosophila dosage compensation complex Mol. Cell 11 2003 1265 1277
-
(2003)
Mol. Cell
, vol.11
, pp. 1265-1277
-
-
Buscaino, A.1
Kocher, T.2
Kind, J.H.3
Holz, H.4
Taipale, M.5
Wagner, K.6
Wilm, M.7
Akhtar, A.8
-
121
-
-
2242492681
-
Extent of chromatin spreading determined by roX RNA recruitment of MSL proteins
-
Y. Park, R.L. Kelley, H. Oh, M.I. Kuroda, and V.H. Meller Extent of chromatin spreading determined by roX RNA recruitment of MSL proteins Science 298 2002 1620 1623
-
(2002)
Science
, vol.298
, pp. 1620-1623
-
-
Park, Y.1
Kelley, R.L.2
Oh, H.3
Kuroda, M.I.4
Meller, V.H.5
-
122
-
-
0242573504
-
The MSL complex levels are critical for its correct targeting to the chromosomes in Drosophila melanogaster
-
O.V. Demakova, I.V. Kotlikova, P.R. Gordadze, A.A. Alekseyenko, M.I. Kuroda, and I.F. Zhimulev The MSL complex levels are critical for its correct targeting to the chromosomes in Drosophila melanogaster Chromosoma 112 2003 103 115
-
(2003)
Chromosoma
, vol.112
, pp. 103-115
-
-
Demakova, O.V.1
Kotlikova, I.V.2
Gordadze, P.R.3
Alekseyenko, A.A.4
Kuroda, M.I.5
Zhimulev, I.F.6
-
123
-
-
0038285493
-
Local spreading of MSL complexes from roX genes on the Drosophila X chromosome
-
H. Oh, Y. Park, and M.I. Kuroda Local spreading of MSL complexes from roX genes on the Drosophila X chromosome Genes Dev. 17 2003 1334 1339
-
(2003)
Genes Dev.
, vol.17
, pp. 1334-1339
-
-
Oh, H.1
Park, Y.2
Kuroda, M.I.3
-
124
-
-
55249112898
-
Transcription rate of noncoding roX1 RNA controls local spreading of the Drosophila MSL chromatin remodeling complex
-
R.L. Kelley, O.K. Lee, and Y.K. Shim Transcription rate of noncoding roX1 RNA controls local spreading of the Drosophila MSL chromatin remodeling complex Mech. Dev. 125 2008 1009 1019
-
(2008)
Mech. Dev.
, vol.125
, pp. 1009-1019
-
-
Kelley, R.L.1
Lee, O.K.2
Shim, Y.K.3
-
125
-
-
38549116197
-
The MLE subunit of the Drosophila MSL complex uses its ATPase activity for dosage compensation and its helicase activity for targeting
-
R. Morra, E.R. Smith, R. Yokoyama, and J.C. Lucchesi The MLE subunit of the Drosophila MSL complex uses its ATPase activity for dosage compensation and its helicase activity for targeting Mol. Cell Biol. 28 2008 958 966
-
(2008)
Mol. Cell Biol.
, vol.28
, pp. 958-966
-
-
Morra, R.1
Smith, E.R.2
Yokoyama, R.3
Lucchesi, J.C.4
-
126
-
-
79953895523
-
Role of the ATPase/helicase maleless (MLE) in the assembly, targeting, spreading and function of the male-specific lethal (MSL) complex of Drosophila
-
R. Morra, R. Yokoyama, H. Ling, and J.C. Lucchesi Role of the ATPase/helicase maleless (MLE) in the assembly, targeting, spreading and function of the male-specific lethal (MSL) complex of Drosophila Epigenetics Chromatin 4 2011 6
-
(2011)
Epigenetics Chromatin
, vol.4
, pp. 6
-
-
Morra, R.1
Yokoyama, R.2
Ling, H.3
Lucchesi, J.C.4
-
127
-
-
0037349339
-
The Apaf-1 internal ribosome entry segment attains the correct structural conformation for function via interactions with PTB and unr
-
S.A. Mitchell, K.A. Spriggs, M.J. Coldwell, R.J. Jackson, and A.E. Willis The Apaf-1 internal ribosome entry segment attains the correct structural conformation for function via interactions with PTB and unr Mol. Cell 11 2003 757 771
-
(2003)
Mol. Cell
, vol.11
, pp. 757-771
-
-
Mitchell, S.A.1
Spriggs, K.A.2
Coldwell, M.J.3
Jackson, R.J.4
Willis, A.E.5
-
128
-
-
77958576363
-
Interaction of noncoding RNA with the rDNA promoter mediates recruitment of DNMT3b and silencing of rRNA genes
-
K.M. Schmitz, C. Mayer, A. Postepska, and I. Grummt Interaction of noncoding RNA with the rDNA promoter mediates recruitment of DNMT3b and silencing of rRNA genes Genes Dev. 24 2010 2264 2269
-
(2010)
Genes Dev.
, vol.24
, pp. 2264-2269
-
-
Schmitz, K.M.1
Mayer, C.2
Postepska, A.3
Grummt, I.4
-
129
-
-
0030975363
-
Genes expressed in neurons of adult male Drosophila
-
H. Amrein, and R. Axel Genes expressed in neurons of adult male Drosophila Cell 88 1997 459 469
-
(1997)
Cell
, vol.88
, pp. 459-469
-
-
Amrein, H.1
Axel, R.2
-
130
-
-
32244445086
-
Variable splicing of non-coding roX2 RNAs influences targeting of MSL dosage compensation complexes in Drosophila
-
Y. Park, H. Oh, V.H. Meller, and M.I. Kuroda Variable splicing of non-coding roX2 RNAs influences targeting of MSL dosage compensation complexes in Drosophila RNA Biol. 2 2005 157 164
-
(2005)
RNA Biol.
, vol.2
, pp. 157-164
-
-
Park, Y.1
Oh, H.2
Meller, V.H.3
Kuroda, M.I.4
-
131
-
-
33645520163
-
Chromosome-wide gene-specific targeting of the Drosophila dosage compensation complex
-
G.D. Gilfillan, T. Straub, E. de Wit, F. Greil, R. Lamm, B. van Steensel, and P.B. Becker Chromosome-wide gene-specific targeting of the Drosophila dosage compensation complex Genes Dev. 20 2006 858 870
-
(2006)
Genes Dev.
, vol.20
, pp. 858-870
-
-
Gilfillan, G.D.1
Straub, T.2
De Wit, E.3
Greil, F.4
Lamm, R.5
Van Steensel, B.6
Becker, P.B.7
-
132
-
-
0042208405
-
Functional redundancy within roX1, a noncoding RNA involved in dosage compensation in Drosophila melanogaster
-
C. Stuckenholz, V.H. Meller, and M.I. Kuroda Functional redundancy within roX1, a noncoding RNA involved in dosage compensation in Drosophila melanogaster Genetics 164 2003 1003 1014
-
(2003)
Genetics
, vol.164
, pp. 1003-1014
-
-
Stuckenholz, C.1
Meller, V.H.2
Kuroda, M.I.3
-
133
-
-
37249042122
-
An evolutionarily conserved domain of roX2 RNA is sufficient for induction of H4-Lys16 acetylation on the Drosophila X chromosome
-
S.W. Park, Y. Kang, J.G. Sypula, J. Choi, H. Oh, and Y. Park An evolutionarily conserved domain of roX2 RNA is sufficient for induction of H4-Lys16 acetylation on the Drosophila X chromosome Genetics 177 2007 1429 1437
-
(2007)
Genetics
, vol.177
, pp. 1429-1437
-
-
Park, S.W.1
Kang, Y.2
Sypula, J.G.3
Choi, J.4
Oh, H.5
Park, Y.6
-
134
-
-
24344490721
-
The severity of roX1 mutations is predicted by MSL localization on the X chromosome
-
X. Deng, B.P. Rattner, S. Souter, and V.H. Meller The severity of roX1 mutations is predicted by MSL localization on the X chromosome Mech. Dev. 122 2005 1094 1105
-
(2005)
Mech. Dev.
, vol.122
, pp. 1094-1105
-
-
Deng, X.1
Rattner, B.P.2
Souter, S.3
Meller, V.H.4
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