-
1
-
-
33750310241
-
Genetic disorders of adipose tissue development, differentiation, and death
-
Agarwal AK, Garg A. Genetic disorders of adipose tissue development, differentiation, and death. Annu Rev Genomics Hum Genet. 2006;7:175-99.
-
(2006)
Annu Rev Genomics Hum Genet.
, vol.7
, pp. 175-199
-
-
Agarwal, A.K.1
Garg, A.2
-
2
-
-
2942528798
-
Notch signalling is linked to epidermal cell differentiation level in basal cell carcinoma, psoriasis and wound healing
-
Thelu J, Rossio P, Favier B. Notch signalling is linked to epidermal cell differentiation level in basal cell carcinoma, psoriasis and wound healing. BMC Dermatol. 2002;2:7.
-
(2002)
BMC Dermatol.
, vol.2
, pp. 7
-
-
Thelu, J.1
Rossio, P.2
Favier, B.3
-
3
-
-
65649106153
-
Modeling inducible human tissue neoplasia identifies an extracellular matrix interaction network involved in cancer progression
-
Reuter JA, Ortiz-Urda S, Kretz M, Garcia J, Scholl FA, Pasmooij AMG, et al. Modeling inducible human tissue neoplasia identifies an extracellular matrix interaction network involved in cancer progression. Cancer Cell. 2009;15:477-88.
-
(2009)
Cancer Cell.
, vol.15
, pp. 477-488
-
-
Reuter, J.A.1
Ortiz-Urda, S.2
Kretz, M.3
Garcia, J.4
Scholl, F.A.5
Pasmooij, A.M.G.6
-
4
-
-
78650012935
-
Invasive three-dimensional organotypic neoplasia from multiple normal human epithelia
-
Ridky TW, Chow JM, Wong DJ, Khavari PA. Invasive three-dimensional organotypic neoplasia from multiple normal human epithelia. Nat Med. 2010;16:1450-5.
-
(2010)
Nat Med.
, vol.16
, pp. 1450-1455
-
-
Ridky, T.W.1
Chow, J.M.2
Wong, D.J.3
Khavari, P.A.4
-
5
-
-
84882766972
-
Developmental fate and cellular maturity encoded in human regulatory DNA landscapes
-
Stergachis AB, Neph S, Reynolds A, Humbert R, Miller B, Paige SL, et al. Developmental fate and cellular maturity encoded in human regulatory DNA landscapes. Cell. 2013;154:888-903.
-
(2013)
Cell.
, vol.154
, pp. 888-903
-
-
Stergachis, A.B.1
Neph, S.2
Reynolds, A.3
Humbert, R.4
Miller, B.5
Paige, S.L.6
-
6
-
-
84865840434
-
Predicting cell-type-specific gene expression from regions of open chromatin
-
Natarajan A, Yardimci GG, Sheffield NC, Crawford GE, Ohler U. Predicting cell-type-specific gene expression from regions of open chromatin. Genome Res. 2012;22:1711-22.
-
(2012)
Genome Res.
, vol.22
, pp. 1711-1722
-
-
Natarajan, A.1
Yardimci, G.G.2
Sheffield, N.C.3
Crawford, G.E.4
Ohler, U.5
-
7
-
-
80053539409
-
Open chromatin defined by DNaseI and FAIRE identifies regulatory elements that shape cell-type identity
-
Song L, Zhang Z, Grasfeder LL, Boyle AP, Giresi PG, Lee B-K, et al. Open chromatin defined by DNaseI and FAIRE identifies regulatory elements that shape cell-type identity. Genome Res. 2011;21:1757-67.
-
(2011)
Genome Res.
, vol.21
, pp. 1757-1767
-
-
Song, L.1
Zhang, Z.2
Grasfeder, L.L.3
Boyle, A.P.4
Giresi, P.G.5
Lee, B.-K.6
-
8
-
-
38649099445
-
High-resolution mapping and characterization of open chromatin across the genome
-
Boyle AP, Davis S, Shulha HP, Meltzer P, Margulies EH, Weng Z, et al. High-resolution mapping and characterization of open chromatin across the genome. Cell. 2008;132:311-22.
-
(2008)
Cell.
, vol.132
, pp. 311-322
-
-
Boyle, A.P.1
Davis, S.2
Shulha, H.P.3
Meltzer, P.4
Margulies, E.H.5
Weng, Z.6
-
9
-
-
34250369627
-
FAIRE (Formaldehyde-Assisted Isolation of Regulatory Elements) isolates active regulatory elements from human chromatin
-
Giresi PG, Kim J, McDaniell RM, Iyer VR, Lieb JD. FAIRE (Formaldehyde-Assisted Isolation of Regulatory Elements) isolates active regulatory elements from human chromatin. Genome Res. 2007;17:877-85.
-
(2007)
Genome Res.
, vol.17
, pp. 877-885
-
-
Giresi, P.G.1
Kim, J.2
McDaniell, R.M.3
Iyer, V.R.4
Lieb, J.D.5
-
10
-
-
77954222814
-
Chromatin regulation by Brg1 underlies heart muscle development and disease
-
Hang CT, Yang J, Han P, Cheng HL, Shang C, Ashley E, et al. Chromatin regulation by Brg1 underlies heart muscle development and disease. Nature. 2010; 466:62-67.
-
(2010)
Nature
, vol.466
, pp. 62-67
-
-
Hang, C.T.1
Yang, J.2
Han, P.3
Cheng, H.L.4
Shang, C.5
Ashley, E.6
-
11
-
-
0035134330
-
Mammalian SWI/SNF complexes promote MyoD-mediated muscle differentiation
-
De la Serna IL, Carlson KA, Imbalzano AN. Mammalian SWI/SNF complexes promote MyoD-mediated muscle differentiation. Nat Genet. 2001;27:187-90.
-
(2001)
Nat Genet.
, vol.27
, pp. 187-190
-
-
Serna, I.L.1
Carlson, K.A.2
Imbalzano, A.N.3
-
12
-
-
27744534349
-
Temporally controlled targeted somatic mutagenesis in embryonic surface ectoderm and fetal epidermal keratinocytes unveils two distinct developmental functions of BRG1 in limb morphogenesis and skin barrier formation
-
Indra AK, Dupé V, Bornert J-M, Messaddeq N, Yaniv M, Mark M, et al. Temporally controlled targeted somatic mutagenesis in embryonic surface ectoderm and fetal epidermal keratinocytes unveils two distinct developmental functions of BRG1 in limb morphogenesis and skin barrier formation. Development. 2005;132:4533-44.
-
(2005)
Development.
, vol.132
, pp. 4533-4544
-
-
Indra, A.K.1
Dupé, V.2
Bornert, J.-M.3
Messaddeq, N.4
Yaniv, M.5
Mark, M.6
-
13
-
-
84873595705
-
ACTL6a enforces the epidermal progenitor state by suppressing SWI/SNF-dependent induction of KLF4
-
Bao X, Tang J, Lopez-Pajares V, Tao S, Qu K, Crabtree GR, et al. ACTL6a enforces the epidermal progenitor state by suppressing SWI/SNF-dependent induction of KLF4. Cell Stem Cell. 2013;12:193-203.
-
(2013)
Cell Stem Cell.
, vol.12
, pp. 193-203
-
-
Bao, X.1
Tang, J.2
Lopez-Pajares, V.3
Tao, S.4
Qu, K.5
Crabtree, G.R.6
-
14
-
-
80053501181
-
Regulation of nucleosome landscape and transcription factor targeting at tissue-specific enhancers by BRG1
-
Hu G, Schones DE, Cui K, Ybarra R, Northrup D, Tang Q, et al. Regulation of nucleosome landscape and transcription factor targeting at tissue-specific enhancers by BRG1. Genome Res. 2011;21:1650-8.
-
(2011)
Genome Res.
, vol.21
, pp. 1650-1658
-
-
Hu, G.1
Schones, D.E.2
Cui, K.3
Ybarra, R.4
Northrup, D.5
Tang, Q.6
-
15
-
-
25144486296
-
The SWI/SNF chromatin-remodeling complex subunit SNF5 is essential for hepatocyte differentiation
-
Gresh L, Bourachot B, Reimann A, Guigas B, Fiette L, Garbay S, et al. The SWI/SNF chromatin-remodeling complex subunit SNF5 is essential for hepatocyte differentiation. EMBO J. 2005;24:3313-24.
-
(2005)
EMBO J.
, vol.24
, pp. 3313-3324
-
-
Gresh, L.1
Bourachot, B.2
Reimann, A.3
Guigas, B.4
Fiette, L.5
Garbay, S.6
-
16
-
-
84878745222
-
Proteomic and bioinformatic analysis of mammalian SWI/SNF complexes identifies extensive roles in human malignancy
-
Kadoch C, Hargreaves DC, Hodges C, Elias L, Ho L, Ranish J, et al. Proteomic and bioinformatic analysis of mammalian SWI/SNF complexes identifies extensive roles in human malignancy. Nat Genet. 2013;45:592-601.
-
(2013)
Nat Genet.
, vol.45
, pp. 592-601
-
-
Kadoch, C.1
Hargreaves, D.C.2
Hodges, C.3
Elias, L.4
Ho, L.5
Ranish, J.6
-
17
-
-
79959653996
-
SWI/SNF nucleosome remodellers and cancer
-
Wilson BG, Roberts CWM. SWI/SNF nucleosome remodellers and cancer. Nat Rev Cancer. 2011;11:481-92.
-
(2011)
Nat Rev Cancer.
, vol.11
, pp. 481-492
-
-
Wilson, B.G.1
Roberts, C.W.M.2
-
18
-
-
1842375739
-
SWI/SNF Stimulates the formation of disparate activator-nucleosome complexes but is partially redundant with cooperative binding
-
Utley RT. SWI/SNF Stimulates the formation of disparate activator-nucleosome complexes but is partially redundant with cooperative binding. J Biol Chem. 1997;272:12642-9.
-
(1997)
J Biol Chem.
, vol.272
, pp. 12642-12649
-
-
Utley, R.T.1
-
19
-
-
18144429118
-
MyoD targets chromatin remodeling complexes to the myogenin locus prior to forming a stable DNA-bound complex
-
De la Serna IL, Ohkawa Y, Berkes CA, Bergstrom DA, Dacwag CS, Tapscott SJ, et al. MyoD targets chromatin remodeling complexes to the myogenin locus prior to forming a stable DNA-bound complex. Mol Cell Biol. 2005;25:3997-4009.
-
(2005)
Mol Cell Biol.
, vol.25
, pp. 3997-4009
-
-
Serna, I.L.1
Ohkawa, Y.2
Berkes, C.A.3
Bergstrom, D.A.4
Dacwag, C.S.5
Tapscott, S.J.6
-
20
-
-
84893777171
-
Overlapping chromatin-remodeling systems collaborate genome wide at dynamic chromatin transitions
-
Morris SA, Baek S, Sung M-H, John S, Wiench M, Johnson TA, et al. Overlapping chromatin-remodeling systems collaborate genome wide at dynamic chromatin transitions. Nat Struct Mol Biol. 2014;21:73-81.
-
(2014)
Nat Struct Mol Biol.
, vol.21
, pp. 73-81
-
-
Morris, S.A.1
Baek, S.2
Sung, M.-H.3
John, S.4
Wiench, M.5
Johnson, T.A.6
-
21
-
-
33846170060
-
Functional differentiation of SWI/SNF remodelers in transcription and cell cycle control
-
Moshkin YM, Mohrmann L, van Ijcken WFJ, Verrijzer CP. Functional differentiation of SWI/SNF remodelers in transcription and cell cycle control. Mol Cell Biol. 2007;27:651-61.
-
(2007)
Mol Cell Biol.
, vol.27
, pp. 651-661
-
-
Moshkin, Y.M.1
Mohrmann, L.2
Ijcken, W.F.J.3
Verrijzer, C.P.4
-
22
-
-
84865491698
-
Functional redundancy of SWI/SNF catalytic subunits in maintaining vascular endothelial cells in the adult heart
-
Willis MS, Homeister JW, Rosson GB, Annayev Y, Holley D, Holly SP, et al. Functional redundancy of SWI/SNF catalytic subunits in maintaining vascular endothelial cells in the adult heart. Circ Res. 2012;111:e111-22.
-
(2012)
Circ Res.
, vol.111
, pp. e111-e122
-
-
Willis, M.S.1
Homeister, J.W.2
Rosson, G.B.3
Annayev, Y.4
Holley, D.5
Holly, S.P.6
-
23
-
-
84888877924
-
Transposition of native chromatin for fast and sensitive epigenomic profiling of open chromatin, DNA-binding proteins and nucleosome position
-
Buenrostro JD, Giresi PG, Zaba LC, Chang HY, Greenleaf WJ. Transposition of native chromatin for fast and sensitive epigenomic profiling of open chromatin, DNA-binding proteins and nucleosome position. Nat Methods. 2013;10:1213-8.
-
(2013)
Nat Methods.
, vol.10
, pp. 1213-1218
-
-
Buenrostro, J.D.1
Giresi, P.G.2
Zaba, L.C.3
Chang, H.Y.4
Greenleaf, W.J.5
-
24
-
-
77951945196
-
Trypsin-induced proteome alteration during cell subculture in mammalian cells
-
Huang H, Hsing H, Lai T, Chen Y, Lee T, Chan H, et al. Trypsin-induced proteome alteration during cell subculture in mammalian cells. J Biomed Sci. 2010;17:36.
-
(2010)
J Biomed Sci.
, vol.17
, pp. 36
-
-
Huang, H.1
Hsing, H.2
Lai, T.3
Chen, Y.4
Lee, T.5
Chan, H.6
-
25
-
-
84903544427
-
Keratinocyte detachment-differentiation connection revisited, or Anoikis-Pityriasi Nexus Redux
-
Banno T, Blumenberg M. Keratinocyte detachment-differentiation connection revisited, or Anoikis-Pityriasi Nexus Redux. PLoS One. 2014;9:1-12.
-
(2014)
PLoS One.
, vol.9
, pp. 1-12
-
-
Banno, T.1
Blumenberg, M.2
-
26
-
-
84924298117
-
Role of chromatin and transcriptional co-regulators in mediating p63-genome interactions in keratinocytes
-
Sethi I, Sinha S, Buck MJ. Role of chromatin and transcriptional co-regulators in mediating p63-genome interactions in keratinocytes. BMC Genomics. 2014;15:1042.
-
(2014)
BMC Genomics.
, vol.15
, pp. 1042
-
-
Sethi, I.1
Sinha, S.2
Buck, M.J.3
-
27
-
-
65249173999
-
An embryonic stem cell chromatin remodeling complex, esBAF, is an essential component of the core pluripotency transcriptional network
-
Ho L, Jothi R, Ronan JL, Cui K, Zhao K, Crabtree GR. An embryonic stem cell chromatin remodeling complex, esBAF, is an essential component of the core pluripotency transcriptional network. Proc Natl Acad Sci U S A. 2009;106:5187-91.
-
(2009)
Proc Natl Acad Sci U S A.
, vol.106
, pp. 5187-5191
-
-
Ho, L.1
Jothi, R.2
Ronan, J.L.3
Cui, K.4
Zhao, K.5
Crabtree, G.R.6
-
28
-
-
79953737587
-
Diverse roles and interactions of the SWI/SNF chromatin remodeling complex revealed using global approaches
-
Euskirchen GM, Auerbach RK, Davidov E, Gianoulis TA, Zhong G, Rozowsky J, et al. Diverse roles and interactions of the SWI/SNF chromatin remodeling complex revealed using global approaches. PLoS Genet. 2011;7:e1002008.
-
(2011)
PLoS Genet.
, vol.7
, pp. e1002008
-
-
Euskirchen, G.M.1
Auerbach, R.K.2
Davidov, E.3
Gianoulis, T.A.4
Zhong, G.5
Rozowsky, J.6
-
29
-
-
0027493251
-
BRG1 contains a conserved domain of the SWI2/SNF2 family necessary for normal mitotic growth and transcription
-
Khavari PA, Peterson CL, Tamkun JW, Mendel DB, Crabtree GR. BRG1 contains a conserved domain of the SWI2/SNF2 family necessary for normal mitotic growth and transcription. Nature. 1993;366:170-4.
-
(1993)
Nature.
, vol.366
, pp. 170-174
-
-
Khavari, P.A.1
Peterson, C.L.2
Tamkun, J.W.3
Mendel, D.B.4
Crabtree, G.R.5
-
30
-
-
84866066605
-
Genomic profiling of a human organotypic model of AEC syndrome reveals ZNF750 as an essential downstream target of mutant TP63
-
Zarnegar BJ, Webster DE, Lopez-Pajares V, Vander Stoep Hunt B, Qu K, Yan KJ, et al. Genomic profiling of a human organotypic model of AEC syndrome reveals ZNF750 as an essential downstream target of mutant TP63. Am J Hum Genet. 2012;91:435-43.
-
(2012)
Am J Hum Genet
, vol.91
, pp. 435-443
-
-
Zarnegar, B.J.1
Webster, D.E.2
Lopez-Pajares, V.3
Vander Stoep Hunt, B.4
Qu, K.5
Yan, K.J.6
-
31
-
-
46349094389
-
Characterization of genome-wide p53-binding sites upon stress response
-
Smeenk L, van Heeringen SJ, Koeppel M, van Driel MA, Bartels SJJ, Akkers RC, et al. Characterization of genome-wide p53-binding sites upon stress response. Nucleic Acids Res. 2008;36:3639-54.
-
(2008)
Nucleic Acids Res.
, vol.36
, pp. 3639-3654
-
-
Smeenk, L.1
Heeringen, S.J.2
Koeppel, M.3
Driel, M.A.4
Bartels, S.J.J.5
Akkers, R.C.6
-
32
-
-
33751230475
-
p63 regulates proliferation and differentiation of developmentally mature keratinocytes
-
Truong AB, Kretz M, Ridky TW, Kimmel R, Khavari PA. p63 regulates proliferation and differentiation of developmentally mature keratinocytes. Genes Dev. 2006;20:3185-97.
-
(2006)
Genes Dev.
, vol.20
, pp. 3185-3197
-
-
Truong, A.B.1
Kretz, M.2
Ridky, T.W.3
Kimmel, R.4
Khavari, P.A.5
-
33
-
-
0033594491
-
p63 is a p53 homologue required for limb and epidermal morphogenesis
-
Mills AA, Zheng B, Wang XJ, Vogel H, Roop DR, Bradley A. p63 is a p53 homologue required for limb and epidermal morphogenesis. Nature. 1999;398:708-13.
-
(1999)
Nature.
, vol.398
, pp. 708-713
-
-
Mills, A.A.1
Zheng, B.2
Wang, X.J.3
Vogel, H.4
Roop, D.R.5
Bradley, A.6
-
34
-
-
0032475845
-
A SWI/SNF-related chromatin remodeling complex, E-RC1, is required for tissue-specific transcriptional regulation by EKLF in vitro
-
Armstrong JA, Bieker JJ, Emerson BM. A SWI/SNF-related chromatin remodeling complex, E-RC1, is required for tissue-specific transcriptional regulation by EKLF in vitro. Cell. 1998;95:93-104.
-
(1998)
Cell.
, vol.95
, pp. 93-104
-
-
Armstrong, J.A.1
Bieker, J.J.2
Emerson, B.M.3
-
35
-
-
0037380161
-
Recent advances in understanding chromatin remodeling by Swi/Snf complexes
-
Martens JA, Winston F. Recent advances in understanding chromatin remodeling by Swi/Snf complexes. Curr Opin Genet Dev. 2003;13:136-42.
-
(2003)
Curr Opin Genet Dev.
, vol.13
, pp. 136-142
-
-
Martens, J.A.1
Winston, F.2
-
36
-
-
62649085538
-
The DNA-encoded nucleosome organization of a eukaryotic genome
-
Kaplan N, Moore IK, Fondufe-Mittendorf Y, Gossett AJ, Tillo D, Field Y, et al. The DNA-encoded nucleosome organization of a eukaryotic genome. Nature. 2009;458:362-6.
-
(2009)
Nature.
, vol.458
, pp. 362-366
-
-
Kaplan, N.1
Moore, I.K.2
Fondufe-Mittendorf, Y.3
Gossett, A.J.4
Tillo, D.5
Field, Y.6
-
37
-
-
33747500567
-
A genomic code for nucleosome positioning
-
Segal E, Fondufe-Mittendorf Y, Chen L, Thåström A, Field Y, Moore IK, et al. A genomic code for nucleosome positioning. Nature. 2006;442:772-8.
-
(2006)
Nature.
, vol.442
, pp. 772-778
-
-
Segal, E.1
Fondufe-Mittendorf, Y.2
Chen, L.3
Thåström, A.4
Field, Y.5
Moore, I.K.6
-
38
-
-
0033231605
-
A C/EBPβ isoform recruits the SWI/SNF complex to activate myeloid genes
-
Kowenz-Leutz E, Leutz A. A C/EBPβ isoform recruits the SWI/SNF complex to activate myeloid genes. Mol Cell. 1999;4:735-43.
-
(1999)
Mol Cell.
, vol.4
, pp. 735-743
-
-
Kowenz-Leutz, E.1
Leutz, A.2
-
39
-
-
84925340676
-
A LncRNA-MAF:MAFB transcription factor network regulates epidermal differentiation
-
Lopez-Pajares V, Qu K, Zhang J, Webster DE, Barajas BC, Siprashvili Z, et al. A LncRNA-MAF:MAFB transcription factor network regulates epidermal differentiation. Dev Cell. 2015;32:693-706.
-
(2015)
Dev Cell.
, vol.32
, pp. 693-706
-
-
Lopez-Pajares, V.1
Qu, K.2
Zhang, J.3
Webster, D.E.4
Barajas, B.C.5
Siprashvili, Z.6
-
40
-
-
0032574802
-
Perturbation of nucleosome core structure by the SWI/SNF complex persists after its detachment, enhancing subsequent transcription factor binding
-
Cote J, Peterson CL, Workman JL. Perturbation of nucleosome core structure by the SWI/SNF complex persists after its detachment, enhancing subsequent transcription factor binding. Proc Natl Acad Sci. 1998;95:4947-52.
-
(1998)
Proc Natl Acad Sci.
, vol.95
, pp. 4947-4952
-
-
Cote, J.1
Peterson, C.L.2
Workman, J.L.3
-
41
-
-
0028093378
-
Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complex
-
Kwon H, Imbalzano AN, Khavari PA, Kingston RE, Green MR. Nucleosome disruption and enhancement of activator binding by a human SW1/SNF complex. Nature. 1994;370:477-81.
-
(1994)
Nature.
, vol.370
, pp. 477-481
-
-
Kwon, H.1
Imbalzano, A.N.2
Khavari, P.A.3
Kingston, R.E.4
Green, M.R.5
-
43
-
-
79952539053
-
ATP-dependent chromatin remodeling: genetics, genomics and mechanisms
-
Hargreaves DC, Crabtree GR. ATP-dependent chromatin remodeling: genetics, genomics and mechanisms. Cell Res. 2011;21:396-420.
-
(2011)
Cell Res.
, vol.21
, pp. 396-420
-
-
Hargreaves, D.C.1
Crabtree, G.R.2
-
44
-
-
13444263724
-
The SWI/SNF chromatin remodeling protein Brg1 is required for vertebrate neurogenesis and mediates transactivation of Ngn and NeuroD
-
Seo S, Richardson GA, Kroll KL. The SWI/SNF chromatin remodeling protein Brg1 is required for vertebrate neurogenesis and mediates transactivation of Ngn and NeuroD. Development. 2005;132:105-15.
-
(2005)
Development.
, vol.132
, pp. 105-115
-
-
Seo, S.1
Richardson, G.A.2
Kroll, K.L.3
-
45
-
-
0035529053
-
Cooperation between C/EBPalpha TBP/TFIIB and SWI/SNF recruiting domains is required for adipocyte differentiation
-
Pedersen TA, Kowenz-Leutz E, Leutz A, Nerlov C. Cooperation between C/EBPalpha TBP/TFIIB and SWI/SNF recruiting domains is required for adipocyte differentiation. Genes Dev. 2001;15:3208-16.
-
(2001)
Genes Dev.
, vol.15
, pp. 3208-3216
-
-
Pedersen, T.A.1
Kowenz-Leutz, E.2
Leutz, A.3
Nerlov, C.4
-
46
-
-
84930967957
-
Transcription factor p63 bookmarks and regulates dynamic enhancers during epidermal differentiation
-
Kouwenhoven EN, Oti M, Niehues H, van Heeringen SJ, Schalkwijk J, Stunnenberg HG, et al. Transcription factor p63 bookmarks and regulates dynamic enhancers during epidermal differentiation. EMBO Rep. 2015;16:863-78.
-
(2015)
EMBO Rep.
, vol.16
, pp. 863-878
-
-
Kouwenhoven, E.N.1
Oti, M.2
Niehues, H.3
Heeringen, S.J.4
Schalkwijk, J.5
Stunnenberg, H.G.6
-
47
-
-
80053956232
-
p63 regulates Satb1 to control tissue-specific chromatin remodeling during development of the epidermis
-
Fessing MY, Mardaryev AN, Gdula MR, Sharov AA, Sharova TY, Rapisarda V, et al. p63 regulates Satb1 to control tissue-specific chromatin remodeling during development of the epidermis. J Cell Biol. 2011;194:825-39.
-
(2011)
J Cell Biol.
, vol.194
, pp. 825-839
-
-
Fessing, M.Y.1
Mardaryev, A.N.2
Gdula, M.R.3
Sharov, A.A.4
Sharova, T.Y.5
Rapisarda, V.6
-
48
-
-
67650725820
-
The biology of chromatin remodeling complexes
-
Clapier CR, Cairns BR. The biology of chromatin remodeling complexes. Annu Rev Biochem. 2009;78:273-304.
-
(2009)
Annu Rev Biochem
, vol.78
, pp. 273-304
-
-
Clapier, C.R.1
Cairns, B.R.2
-
49
-
-
39749145198
-
Dynamic regulation of nucleosome positioning in the human genome
-
Schones DE, Cui K, Cuddapah S, Roh T-Y, Barski A, Wang Z, et al. Dynamic regulation of nucleosome positioning in the human genome. Cell. 2008;132:887-98.
-
(2008)
Cell.
, vol.132
, pp. 887-898
-
-
Schones, D.E.1
Cui, K.2
Cuddapah, S.3
Roh, T.-Y.4
Barski, A.5
Wang, Z.6
-
50
-
-
84901921616
-
Coregulation of transcription factor binding and nucleosome occupancy through DNA features of mammalian enhancers
-
Barozzi I, Simonatto M, Bonifacio S, Yang L, Rohs R, Ghisletti S, et al. Coregulation of transcription factor binding and nucleosome occupancy through DNA features of mammalian enhancers. Mol Cell. 2014;54:844-57.
-
(2014)
Mol Cell.
, vol.54
, pp. 844-857
-
-
Barozzi, I.1
Simonatto, M.2
Bonifacio, S.3
Yang, L.4
Rohs, R.5
Ghisletti, S.6
-
51
-
-
77950262538
-
Nucleosome dynamics define transcriptional enhancers
-
He HH, Meyer CA, Shin H, Bailey ST, Wei G, Wang Q, et al. Nucleosome dynamics define transcriptional enhancers. Nat Genet. 2010;42:343-7.
-
(2010)
Nat Genet.
, vol.42
, pp. 343-347
-
-
He, H.H.1
Meyer, C.A.2
Shin, H.3
Bailey, S.T.4
Wei, G.5
Wang, Q.6
-
52
-
-
58249086425
-
Understanding the words of chromatin regulation
-
Wu JI, Lessard J, Crabtree GR. Understanding the words of chromatin regulation. Cell. 2009;136:200-6.
-
(2009)
Cell.
, vol.136
, pp. 200-206
-
-
Wu, J.I.1
Lessard, J.2
Crabtree, G.R.3
-
53
-
-
84922061611
-
Recurrent point mutations in the kinetochore gene KNSTRN in cutaneous squamous cell carcinoma
-
Lee CS, Bhaduri A, Mah A, Johnson WL, Ungewickell A, Aros CJ, et al. Recurrent point mutations in the kinetochore gene KNSTRN in cutaneous squamous cell carcinoma. Nat Genet. 2014;46:1060-2.
-
(2014)
Nat Genet.
, vol.46
, pp. 1060-1062
-
-
Lee, C.S.1
Bhaduri, A.2
Mah, A.3
Johnson, W.L.4
Ungewickell, A.5
Aros, C.J.6
-
54
-
-
78649773164
-
Rapid, low-input, low-bias construction of shotgun fragment libraries by high-density in vitro transposition
-
Adey A, Morrison HG, Asan, Xun X, Kitzman JO, Turner EH, et al. Rapid, low-input, low-bias construction of shotgun fragment libraries by high-density in vitro transposition. Genome Biol. 2010;11:R119.
-
(2010)
Genome Biol.
, vol.11
, pp. R119
-
-
Adey, A.1
Morrison, H.G.2
Asan, H.G.3
Xun, X.4
Kitzman, J.O.5
Turner, E.H.6
-
55
-
-
84907155418
-
ZNF750 interacts with KLF4 and RCOR1, KDM1A, and CTBP1/2 chromatin regulators to repress epidermal progenitor genes and induce differentiation genes
-
Boxer LD, Barajas B, Tao S, Zhang J, Khavari PA. ZNF750 interacts with KLF4 and RCOR1, KDM1A, and CTBP1/2 chromatin regulators to repress epidermal progenitor genes and induce differentiation genes. Genes Dev. 2014;28:2013-26.
-
(2014)
Genes Dev.
, vol.28
, pp. 2013-2026
-
-
Boxer, L.D.1
Barajas, B.2
Tao, S.3
Zhang, J.4
Khavari, P.A.5
-
56
-
-
84863116597
-
Suppression of progenitor differentiation requires the long noncoding RNA ANCR
-
Kretz M, Webster DE, Flockhart RJ, Lee CS, Zehnder A, Lopez-Pajares V, et al. Suppression of progenitor differentiation requires the long noncoding RNA ANCR. Genes Dev. 2012;26:338-43.
-
(2012)
Genes Dev.
, vol.26
, pp. 338-343
-
-
Kretz, M.1
Webster, D.E.2
Flockhart, R.J.3
Lee, C.S.4
Zehnder, A.5
Lopez-Pajares, V.6
|