-
1
-
-
0024373139
-
Cloning of cDNA for the major DNA-binding protein of the erythroid lineage through expression in mammalian cells
-
Tsai SF, Martin DI, Zon LI, D'Andrea AD, Wong GG, Orkin SH. Cloning of cDNA for the major DNA-binding protein of the erythroid lineage through expression in mammalian cells. Nature. 1989;339:446-451.
-
(1989)
Nature
, vol.339
, pp. 446-451
-
-
Tsai, S.F.1
Martin, D.I.2
Zon, L.I.3
D'Andrea, A.D.4
Wong, G.G.5
Orkin, S.H.6
-
2
-
-
0029926485
-
Arrested development of embryonic red cell precursors in mouse embryos lacking transcription factor GATA-1
-
DOI 10.1073/pnas.93.22.12355
-
Fujiwara Y, Browne CP, Cunniff K, Goff SC, Orkin SH. Arrested development of embryonic red cell precursors in mouse embryos lacking transcription factor GATA-1. Proc Natl Acad Sci U S A. 1996;93:12355-12358. (Pubitemid 26367147)
-
(1996)
Proceedings of the National Academy of Sciences of the United States of America
, vol.93
, Issue.22
, pp. 12355-12358
-
-
Fujiwara, Y.1
Browne, C.P.2
Cunniff, K.3
Goff, S.C.4
Orkin, S.H.5
-
3
-
-
0025977563
-
Erythroid differentiation in chimaeric mice blocked by a targeted mutation in the gene for transcription factor GATA-1
-
Pevny L, Simon MC, Robertson E, et al. Erythroid differentiation in chimeric mice blocked by a targeted mutation in the gene for transcription factor GATA-1. Nature. 1991;349:257-260. (Pubitemid 21912061)
-
(1991)
Nature
, vol.349
, Issue.6306
, pp. 257-260
-
-
Pevny, L.1
Simon, M.C.2
Robertson, E.3
Klein, W.H.4
Tsai, S.-F.5
D'Agati, V.6
Orkin, S.H.7
Costantini, F.8
-
4
-
-
0030926006
-
A lineage-selective knockout establishes the critical role of transcription factor GATA-1 in megakaryocyte growth and platelet development
-
DOI 10.1093/emboj/16.13.3965
-
Shivdasani RA, Fujiwara Y, McDevitt MA, Orkin SH. A lineage-selective knockout establishes the critical role of transcription factor GATA-1 in megakaryocyte growth and platelet development. EMBO J. 1997;16:3965-3973. (Pubitemid 27281012)
-
(1997)
EMBO Journal
, vol.16
, Issue.13
, pp. 3965-3973
-
-
Shivdasani, R.A.1
Fujiwara, Y.2
McDevitt, M.A.3
Orkin, S.H.4
-
5
-
-
0037415557
-
low mouse mutant
-
DOI 10.1084/jem.20021149
-
Migliaccio AR, Rana RA, Sanchez M, et al. GATA-1 as a regulator of mast cell differentiation revealed by the phenotype of the GATA-1low mouse mutant. J Exp Med. 2003;197:281-296. (Pubitemid 36184235)
-
(2003)
Journal of Experimental Medicine
, vol.197
, Issue.3
, pp. 281-296
-
-
Migliaccio, A.R.1
Rana, R.A.2
Sanchez, M.3
Lorenzini, R.4
Centurione, L.5
Bianchi, L.6
Vannucchi, A.M.7
Migliaccio, G.8
Orkin, S.H.9
-
6
-
-
0037013924
-
Targeted deletion of a high-affinity GATA-binding site in the GATA-1 promoter leads to selective loss of the eosinophil lineage in vivo
-
DOI 10.1084/jem.20020656
-
Yu C, Cantor AB, Yang H, et al. Targeted deletion of a high-affinity GATA-binding site in the GATA-1 promoter leads to selective loss of the eosinophil lineage in vivo. J Exp Med. 2002;195:1387-1395. (Pubitemid 34602816)
-
(2002)
Journal of Experimental Medicine
, vol.195
, Issue.11
, pp. 1387-1395
-
-
Yu, C.1
Cantor, A.B.2
Yang, H.3
Browne, C.4
Wells, R.A.5
Fujiwara, Y.6
Orkin, S.H.7
-
7
-
-
8644228649
-
Global regulation of erythroid gene expression by transcription factor GATA-1
-
DOI 10.1182/blood-2004-04-1603
-
Welch JJ, Watts JA, Vakoc CR, et al. Global regulation of erythroid gene expression by transcription factor GATA-1. Blood. 2004;104:3136-3147. (Pubitemid 39507127)
-
(2004)
Blood
, vol.104
, Issue.10
, pp. 3136-3147
-
-
Welch, J.J.1
Watts, J.A.2
Vakoc, C.R.3
Yao, Y.4
Wang, H.5
Hardison, R.C.6
Blobel, G.A.7
Chodosh, L.A.8
Weiss, M.J.9
-
8
-
-
0346374823
-
Context-dependent regulation of GATA-1 by friend of GATA-1
-
Letting DL, Chen YY, Rakowski C, Reedy S, Blobel GA. Context-dependent regulation of GATA-1 by friend of GATA-1. Proc Natl Acad Sci U S A. 2004;101:476-481.
-
(2004)
Proc Natl Acad Sci U S A
, vol.101
, pp. 476-481
-
-
Letting, D.L.1
Chen, Y.Y.2
Rakowski, C.3
Reedy, S.4
Blobel, G.A.5
-
9
-
-
0025203886
-
Transcriptional activation and DNA binding by the erythroid factor GF-1/ NF-E1/Eryf 1
-
Martin DI, Orkin SH. Transcriptional activation and DNA binding by the erythroid factor GF-1/NFE1/Eryf 1. Genes Dev. 1990;4:1886-1898. (Pubitemid 120012590)
-
(1990)
Genes and Development
, vol.4
, Issue.11
, pp. 1886-1898
-
-
Martin, D.I.K.1
Orkin, S.H.2
-
10
-
-
0742288407
-
Coregulator-dependent facilitation of chromatin occupancy by GATA-1
-
DOI 10.1073/pnas.0307612100
-
Pal S, Cantor AB, Johnson KD, et al. Coregulator-dependent facilitation of chromatin occupancy by GATA-1. Proc Natl Acad Sci U S A. 2004;101: 980-985. (Pubitemid 38160570)
-
(2004)
Proceedings of the National Academy of Sciences of the United States of America
, vol.101
, Issue.4
, pp. 980-985
-
-
Pal, S.1
Cantor, A.B.2
Johnson, K.D.3
Moran, T.B.4
Boyer, M.E.5
Orkin, S.H.6
Bresnick, E.H.7
-
11
-
-
13244272059
-
Proximity among distant regulatory elements at the β-globin locus requires GATA-1 and FOG-1
-
DOI 10.1016/j.molcel.2004.12.028, PII S1097276505010154
-
Vakoc CR, Letting DL, Gheldof N, et al. Proximity among distant regulatory elements at the β-globin locus requires GATA-1 and FOG-1. Mol Cell. 2005;17:453-462. (Pubitemid 40193315)
-
(2005)
Molecular Cell
, vol.17
, Issue.3
, pp. 453-462
-
-
Vakoc, C.R.1
Letting, D.L.2
Gheldof, N.3
Sawado, T.4
Bender, M.A.5
Groudine, M.6
Weiss, M.J.7
Dekker, J.8
Blobel, G.A.9
-
12
-
-
38649128173
-
Exchange of GATA Factors Mediates Transitions in Looped Chromatin Organization at a Developmentally Regulated Gene Locus
-
DOI 10.1016/j.molcel.2007.11.020, PII S109727650700799X
-
Jing H, Vakoc CR, Ying L, et al. Exchange of GATA factors mediates transitions in looped chromatin organization at a developmentally regulated gene locus. Mol Cell. 2008;29:232-242. (Pubitemid 351172817)
-
(2008)
Molecular Cell
, vol.29
, Issue.2
, pp. 232-242
-
-
Jing, H.1
Vakoc, C.R.2
Ying, L.3
Mandat, S.4
Wang, H.5
Zheng, X.6
Blobel, G.A.7
-
13
-
-
0032506542
-
Regulation of activity of the transcription factor GATA-1 by acetylation
-
DOI 10.1038/25166
-
Boyes J, Byfield P, Nakatani Y, Ogryzko V. Regulation of activity of the transcription factor GATA-1 by acetylation. Nature. 1998;396:594-598. (Pubitemid 28563723)
-
(1998)
Nature
, vol.396
, Issue.6711
, pp. 594-598
-
-
Boyes, J.1
Byfield, P.2
Nakatani, Y.3
Ogryzko, V.4
-
14
-
-
0032910957
-
CREB-Binding protein acetylates hematopoietic transcription factor GATA- 1 at functionally important sites
-
Hung HL, Lau J, Kim AY, Weiss MJ, Blobel GA. CREB-binding protein acetylates hematopoietic transcription factor GATA-1 at functionally important sites. Mol Cell Biol. 1999;19:3496-3505. (Pubitemid 29193809)
-
(1999)
Molecular and Cellular Biology
, vol.19
, Issue.5
, pp. 3496-3505
-
-
Hung, H.-L.1
Lau, J.2
Kim, A.Y.3
Weiss, M.J.4
Blobel, G.A.5
-
15
-
-
2942682654
-
Modification of the erythroid transcription factor GATA-1 by SUMO-1
-
DOI 10.1073/pnas.0308605101
-
Collavin L, Gostissa M, Avolio F, et al. Modification of the erythroid transcription factor GATA-1 by SUMO-1. Proc Natl Acad Sci U S A. 2004;101: 8870-8875. (Pubitemid 38781578)
-
(2004)
Proceedings of the National Academy of Sciences of the United States of America
, vol.101
, Issue.24
, pp. 8870-8875
-
-
Collavin, L.1
Gostissa, M.2
Avolio, F.3
Secco, P.4
Ronchi, A.5
Santoro, C.6
Del Sal, G.7
-
16
-
-
33746532476
-
Acetylation and MAPK phosphorylation cooperate to regulate the degradation of active GATA-1
-
DOI 10.1038/sj.emboj.7601228, PII 7601228
-
Hernandez-Hernandez A, Ray P, Litos G, et al. Acetylation and MAPK phosphorylation cooperate to regulate the degradation of active GATA-1. EMBO J. 2006;25:3264-3274. (Pubitemid 44141785)
-
(2006)
EMBO Journal
, vol.25
, Issue.14
, pp. 3264-3274
-
-
Hernandez-Hernandez, A.1
Ray, P.2
Litos, G.3
Ciro, M.4
Ottolenghi, S.5
Beug, H.6
Boyes, J.7
-
18
-
-
0035929608
-
The N-terminal Zinc Finger of the Erythroid Transcription Factor GATA-1 Binds GATC Motifs in DNA
-
DOI 10.1074/jbc.M106256200
-
Newton A, Mackay J, Crossley M. The N-terminal zinc finger of the erythroid transcription factor GATA-1 binds GATC motifs in DNA. J Biol Chem. 2001;276:35794-35801. (Pubitemid 37384384)
-
(2001)
Journal of Biological Chemistry
, vol.276
, Issue.38
, pp. 35794-35801
-
-
Newton, A.1
Mackay, J.2
Crossley, M.3
-
19
-
-
0242496340
-
Determinants of GATA-1 binding to DNA: The role of non-finger residues
-
DOI 10.1074/jbc.M306410200
-
Ghirlando R, Trainor CD. Determinants of GATA-1 binding to DNA: the role of non-finger residues. J Biol Chem. 2003;278:45620-45628. (Pubitemid 37432704)
-
(2003)
Journal of Biological Chemistry
, vol.278
, Issue.46
, pp. 45620-45628
-
-
Ghirlando, R.1
Trainor, C.D.2
-
20
-
-
0025876999
-
Functional analysis and in vivo footprinting implicate the erythroid transcription factor GATA-1 as a positive regulator of its own promoter
-
Tsai SF, Strauss E, Orkin SH. Functional analysis and in vivo footprinting implicate the erythroid transcription factor GATA-1 as a positive regulator of its own promoter. Genes Dev. 1991;5:919-931. (Pubitemid 21906007)
-
(1991)
Genes and Development
, vol.5
, Issue.6
, pp. 919-931
-
-
Tsai, S.-F.1
Strauss, E.2
Orkin, S.H.3
-
21
-
-
0029863093
-
A palindromic regulatory site within vertebrate GATA-1 promoters requires both zinc fingers of the GATA-1 DNA-binding domain for high-affinity interaction
-
Trainor CD, Omichinski JG, Vandergon TL, Gronenborn AM, Clore GM, Felsenfeld G. A palindromic regulatory site within vertebrate GATA-1 promoters requires both zinc fingers of the GATA-1 DNA-binding domain for high-affinity interaction. Mol Cell Biol. 1996;16:2238-2247. (Pubitemid 26123744)
-
(1996)
Molecular and Cellular Biology
, vol.16
, Issue.5
, pp. 2238-2247
-
-
Trainor, C.D.1
Omichinski, J.G.2
Vandergon, T.L.3
Gronenborn, A.M.4
Clore, G.M.5
Felsenfeld, G.6
-
22
-
-
12344325677
-
GATA1 in normal and malignant hematopoiesis
-
Crispino JD. GATA1 in normal and malignant hematopoiesis. Semin Cell Dev Biol. 2005;16:137-147.
-
(2005)
Semin Cell Dev Biol
, vol.16
, pp. 137-147
-
-
Crispino, J.D.1
-
23
-
-
0031472234
-
FOG, a multitype zinc finger protein, acts as a cofactor for transcription factor GATA-1 in erythroid and megakaryocytic differentiation
-
Tsang AP, Visvader JE, Turner CA, et al. FOG, a multitype zinc finger protein, acts as a cofactor for transcription factor GATA-1 in erythroid and megakaryocytic differentiation. Cell. 1997;90:109-119.
-
(1997)
Cell
, vol.90
, pp. 109-119
-
-
Tsang, A.P.1
Visvader, J.E.2
Turner, C.A.3
-
24
-
-
0033587755
-
Negative cross-talk between hematopoietic regulators: GATA proteins repress PU.1
-
DOI 10.1073/pnas.96.15.8705
-
Zhang P, Behre G, Pan J, et al. Negative crosstalk between hematopoietic regulators: GATA proteins repress PU.1. Proc Natl Acad Sci U S A. 1999;96:8705-8710. (Pubitemid 29354855)
-
(1999)
Proceedings of the National Academy of Sciences of the United States of America
, vol.96
, Issue.15
, pp. 8705-8710
-
-
Zhang, P.1
Behre, G.2
Pan, J.3
Iwama, A.4
Wara-Aswapati, N.5
Radomska, H.S.6
Auron, P.E.7
Tenen, D.G.8
Sun, Z.9
-
25
-
-
0028800317
-
Transcription factor GATA-1 permits survival and maturation of erythroid precursors by preventing apoptosis
-
Weiss MJ, Orkin SH. Transcription factor GATA-1 permits survival and maturation of erythroid precursors by preventing apoptosis. Proc Natl Acad Sci U S A. 1995;92:9623-9627.
-
(1995)
Proc Natl Acad Sci U S A
, vol.92
, pp. 9623-9627
-
-
Weiss, M.J.1
Orkin, S.H.2
-
26
-
-
0033168769
-
GATA-1 and erythropoietin cooperate to promote erythroid cell survival by regulating bcl-x(L) expression
-
Gregory T, Yu C, Ma A, Orkin SH, Blobel GA, Weiss MJ. GATA-1 and erythropoietin cooperate to promote erythroid cell survival by regulating Bcl-xL expression. Blood. 1999;94:87-96. (Pubitemid 29300137)
-
(1999)
Blood
, vol.94
, Issue.1
, pp. 87-96
-
-
Gregory, T.1
Yu, C.2
Ma, A.3
Orkin, S.H.4
Blobel, G.A.5
Weiss, M.J.6
-
27
-
-
0028922885
-
Massive cell death of immature hematopoietic cells and neurons in Bcl-x-deficient mice
-
Motoyama N, Wang F, Roth KA, et al. Massive cell death of immature hematopoietic cells and neurons in Bcl-x-deficient mice. Science. 1995; 267:1506-1510.
-
(1995)
Science
, vol.267
, pp. 1506-1510
-
-
Motoyama, N.1
Wang, F.2
Roth, K.A.3
-
28
-
-
0032528484
-
Role of GATA-1 in proliferation and differentiation of definitive erythroid and megakaryocytic cells in vivo
-
Takahashi S, Komeno T, Suwabe N, et al. Role of GATA-1 in proliferation and differentiation of definitive erythroid and megakaryocytic cells in vivo. Blood. 1998;92:434-442. (Pubitemid 28323705)
-
(1998)
Blood
, vol.92
, Issue.2
, pp. 434-442
-
-
Takahashi, S.1
Komeno, T.2
Suwabe, N.3
Yoh, K.4
Nakajima, O.5
Nishimura, S.6
Kuroha, T.7
Nagasawa, T.8
Yamamoto, M.9
-
29
-
-
20444485344
-
Graded levels of GATA-1 expression modulate survival, proliferation, and differentiation of erythroid progenitors
-
DOI 10.1074/jbc.M500081200
-
Pan X, Ohneda O, Ohneda K, et al. Graded levels of GATA-1 expression modulate survival, proliferation, and differentiation of erythroid progenitors. J Biol Chem. 2005;280:22385-22394. (Pubitemid 40827894)
-
(2005)
Journal of Biological Chemistry
, vol.280
, Issue.23
, pp. 22385-22394
-
-
Pan, X.1
Ohneda, O.2
Ohneda, K.3
Lindeboom, F.4
Iwata, F.5
Shimizu, R.6
Nagano, M.7
Suwabe, N.8
Philipsen, S.9
Lim, K.-C.10
Engel, J.D.11
Yamamoto, M.12
-
30
-
-
1642415651
-
Deletion of a Negatively Acting Sequence in a Chimeric GATA-1 Enhancer-Long Terminal Repeat Greatly Increases Retrovirally Mediated Erythroid Expression
-
DOI 10.1074/jbc.M313638200
-
Testa A, Lotti F, Cairns L, et al. Deletion of a negatively acting sequence in a chimeric GATA-1 enhancer-long terminal repeat greatly increases retrovirally mediated erythroid expression. J Biol Chem. 2004;279:10523-10531. (Pubitemid 38372663)
-
(2004)
Journal of Biological Chemistry
, vol.279
, Issue.11
, pp. 10523-10531
-
-
Testa, A.1
Lotti, F.2
Cairns, L.3
Grande, A.4
Ottolenghi, S.5
Ferrari, G.6
Ronchi, A.7
-
31
-
-
0043092011
-
The onset of p53-dependent apoptosis plays a role in terminal differentiation of human normoblasts
-
DOI 10.1038/sj.onc.1206541
-
Peller S, Frenkel J, Lapidot T, et al. The onset of p53-dependent apoptosis plays a role in terminal differentiation of human normoblasts. Oncogene. 2003;22:4648-4655. (Pubitemid 36976439)
-
(2003)
Oncogene
, vol.22
, Issue.30
, pp. 4648-4655
-
-
Peller, S.1
Frenkel, J.2
Lapidot, T.3
Kahn, J.4
Rahimi-Levene, N.5
Yona, R.6
Nissim, L.7
Goldfinger, N.8
Sherman, D.J.9
Rotter, V.10
-
32
-
-
33947250363
-
Distinct roles of Mdm2 and Mdm4 in red cell production
-
DOI 10.1182/blood-2006-03-013656
-
Maetens M, Doumont G, Clercq SD, et al. Distinct roles of Mdm2 and Mdm4 in red cell production. Blood. 2007;109:2630-2633. (Pubitemid 46425913)
-
(2007)
Blood
, vol.109
, Issue.6
, pp. 2630-2633
-
-
Maetens, M.1
Doumont, G.2
De Clercq, S.3
Francoz, S.4
Froment, P.5
Bellefroid, E.6
Klingmuller, U.7
Lozano, G.8
Marine, J.-C.9
-
33
-
-
0038111018
-
GATA-1-mediated proliferation arrest during erythroid maturation
-
DOI 10.1128/MCB.23.14.5031-5042.2003
-
Rylski M, Welch JJ, Chen YY, et al. GATA-1-mediated proliferation arrest during erythroid maturation. Mol Cell Biol. 2003;23:5031-5042. (Pubitemid 36793347)
-
(2003)
Molecular and Cellular Biology
, vol.23
, Issue.14
, pp. 5031-5042
-
-
Rylski, M.1
Welch, J.J.2
Chen, Y.-Y.3
Letting, D.L.4
Diehl, J.A.5
Chodosh, L.A.6
Blobel, G.A.7
Weiss, M.J.8
-
34
-
-
0141953999
-
Reversal of tumorigenicity and the block to differentiation in erythroleukemia cells by GATA-1
-
Choe KS, Radparvar F, Matushansky I, Rekhtman N, Han X, Skoultchi AI. Reversal of tumorigenicity and the block to differentiation in erythroleukemia cells by GATA-1. Cancer Res. 2003;63:6363-6369. (Pubitemid 37255185)
-
(2003)
Cancer Research
, vol.63
, Issue.19
, pp. 6363-6369
-
-
Choe, K.S.1
Radparvar, F.2
Matushansky, I.3
Rekhtman, N.4
Han, X.5
Skoultchi, A.I.6
-
35
-
-
23844476499
-
P53-Dependent transcriptional repression of c-myc is required for G1 cell cycle arrest
-
Ho JS, Ma W, Mao DY, Benchimol S. p53-Dependent transcriptional repression of c-myc is required for G1 cell cycle arrest. Mol Cell Biol. 2005;25:7423-7431.
-
(2005)
Mol Cell Biol
, vol.25
, pp. 7423-7431
-
-
Ho, J.S.1
Ma, W.2
Mao, D.Y.3
Benchimol, S.4
-
36
-
-
0028883179
-
Tumor suppressor p53 is a direct transcriptional activator of the human bax gene
-
Miyashita T, Reed JC. Tumor suppressor p53 is a direct transcriptional activator of the human bax gene. Cell. 1995;80:293-299.
-
(1995)
Cell
, vol.80
, pp. 293-299
-
-
Miyashita, T.1
Reed, J.C.2
-
37
-
-
0034640281
-
Noxa, a BH3-only member of the Bcl-2 family and candidate mediator of p53-induced apoptosis
-
DOI 10.1126/science.288.5468.1053
-
Oda E, Ohki R, Murasawa H, et al. Noxa, a BH3-only member of the Bcl-2 family and candidate mediator of p53-induced apoptosis. Science. 2000;288:1053-1058. (Pubitemid 30324238)
-
(2000)
Science
, vol.288
, Issue.5468
, pp. 1053-1058
-
-
Oda, E.1
Ohki, R.2
Murasawa, H.3
Nemoto, J.4
Shibue, T.5
Yamashita, T.6
Tokino, T.7
Taniguchi, T.8
Tanaka, N.9
-
38
-
-
0029028354
-
Interaction between the retinoblastoma protein and the oncoprotein MDM2
-
Xiao ZX, Chen J, Levine AJ, et al. Interaction between the retinoblastoma protein and the oncoprotein MDM2. Nature. 1995;375:694-698.
-
(1995)
Nature
, vol.375
, pp. 694-698
-
-
Xiao, Z.X.1
Chen, J.2
Levine, A.J.3
-
39
-
-
0142027901
-
PU.1 and pRB Interact and Cooperate to Repress GATA-1 and Block Erythroid Differentiation
-
DOI 10.1128/MCB.23.21.7460-7474.2003
-
Rekhtman N, Choe KS, Matushansky I, Murray S, Stopka T, Skoultchi AI. PU.1 and pRB interact and cooperate to repress GATA-1 and block erythroid differentiation. Mol Cell Biol. 2003;23:7460-7474. (Pubitemid 37271448)
-
(2003)
Molecular and Cellular Biology
, vol.23
, Issue.21
, pp. 7460-7474
-
-
Rekhtman, N.1
Choe, K.S.2
Matushansky, I.3
Murray, S.4
Stopka, T.5
Skoultchi, A.I.6
-
40
-
-
33745214419
-
Structure of the Tfb1/p53 Complex: Insights into the Interaction between the p62/Tfb1 Subunit of TFIIH and the Activation Domain of p53
-
DOI 10.1016/j.molcel.2006.05.007, PII S109727650600298X
-
Di Lello P, Jenkins LM, Jones TN, et al. Structure of the Tfb1/p53 complex: insights into the interaction between the p62/Tfb1 subunit of TFIIH and the activation domain of p53. Mol Cell. 2006;22: 731-740. (Pubitemid 43912466)
-
(2006)
Molecular Cell
, vol.22
, Issue.6
, pp. 731-740
-
-
Di Lello, P.1
Jenkins, L.M.M.2
Jones, T.N.3
Nguyen, B.D.4
Hara, T.5
Yamaguchi, H.6
Dikeakos, J.D.7
Appella, E.8
Legault, P.9
Omichinski, J.G.10
-
41
-
-
0025730640
-
A rapid micropreparation technique for extraction of DNA-binding proteins from limiting numbers of mammalian cells
-
Andrews NC, Faller DV. A rapid micropreparation technique for extraction of DNA-binding proteins from limiting numbers of mammalian cells. Nucleic Acids Res. 1991;19:2499.
-
(1991)
Nucleic Acids Res
, vol.19
, pp. 2499
-
-
Andrews, N.C.1
Faller, D.V.2
-
42
-
-
0033151624
-
Direct interaction of hematopoietic transcription factors PU.1 and GATA- 1: Functional antagonism in erythroid cells
-
Rekhtman N, Radparvar F, Evans T, Skoultchi AI. Direct interaction of hematopoietic transcription factors PU.1 and GATA-1: functional antagonism in erythroid cells. Genes Dev. 1999;13:1398-1411. (Pubitemid 29270245)
-
(1999)
Genes and Development
, vol.13
, Issue.11
, pp. 1398-1411
-
-
Rekhtman, N.1
Radparvar, F.2
Evans, T.3
Skoultchi, A.I.4
-
43
-
-
0033565868
-
An insulator element and condensed chromatin region separate the chicken -globin locus from an independently regulated erythroid-specific folate receptor gene
-
Prioleau MN, Nony P, Simpson M, Felsenfeld G. An insulator element and condensed chromatin region separate the chicken -globin locus from an independently regulated erythroid-specific folate receptor gene. EMBO J. 1999;18:4035-4048.
-
(1999)
EMBO J
, vol.18
, pp. 4035-4048
-
-
Prioleau, M.N.1
Nony, P.2
Simpson, M.3
Felsenfeld, G.4
-
44
-
-
0027284167
-
NMR structure of a specific DNA complex of Zn-containing DNA binding domain of GATA-1
-
Omichinski JG, Clore GM, Schaad O, et al. NMR structure of a specific DNA complex of Zn-containing DNAbinding domain of GATA-1. Science. 1993;261:438-446. (Pubitemid 23276551)
-
(1993)
Science
, vol.261
, Issue.5120
, pp. 438-446
-
-
Omichinski, J.G.1
Clore, G.M.2
Schaad, O.3
Felsenfeld, G.4
Trainor, C.5
Appella, E.6
Stahl, S.J.7
Gronenborn, A.M.8
-
45
-
-
0026561121
-
Mice deficient for p53 are developmentally normal but susceptible to spontaneous tumors
-
Donehower LA, Harvey M, Slagle BL, et al. Mice deficient for p53 are developmentally normal but susceptible to spontaneous tumors. Nature. 1992;356:215-221.
-
(1992)
Nature
, vol.356
, pp. 215-221
-
-
Donehower, L.A.1
Harvey, M.2
Slagle, B.L.3
-
46
-
-
0029013310
-
Absence of p53 allows direct immortalization of hematopoietic cells by the myc and raf oncogenes
-
Metz T, Harris AW, Adams JM. Absence of p53 allows direct immortalization of hematopoietic cells by the myc and raf oncogenes. Cell. 1995; 82:29-36.
-
(1995)
Cell
, vol.82
, pp. 29-36
-
-
Metz, T.1
Harris, A.W.2
Adams, J.M.3
-
48
-
-
63149148538
-
Insights into the manifestations, outcomes and mechanisms of leukemogenesis in Down syndrome
-
Malinge S, Izraeli S, Crispino JD. Insights into the manifestations, outcomes and mechanisms of leukemogenesis in Down syndrome. Blood. 2009.
-
(2009)
Blood
-
-
Malinge, S.1
Izraeli, S.2
Crispino, J.D.3
-
49
-
-
0034656393
-
GATA-1 interacts with the myeloid PU.1 transcription factor and represses PU.1-dependent transcription
-
Nerlov C, Querfurth E, Kulessa H, Graf T. GATA-1 interacts with the myeloid PU.1 transcription factor and represses PU.1-dependent transcription. Blood. 2000;95:2543-2551. (Pubitemid 30210532)
-
(2000)
Blood
, vol.95
, Issue.8
, pp. 2543-2551
-
-
Nerlov, C.1
Querfurth, E.2
Kulessa, H.3
Graf, T.4
-
50
-
-
34848883146
-
Reciprocal Activation of GATA-1 and PU.1 Marks Initial Specification of Hematopoietic Stem Cells into Myeloerythroid and Myelolymphoid Lineages
-
DOI 10.1016/j.stem.2007.07.004, PII S1934590907000707
-
Arinobu Y, Mizuno S, Chong Y, et al. Reciprocal activation of GATA-1 and PU.1 marks initial specification of hematopoietic stem cells into myeloerythroid and myelolymphoid lineages. Cell Stem Cell. 2007;1:416-427. (Pubitemid 47506533)
-
(2007)
Cell Stem Cell
, vol.1
, Issue.4
, pp. 416-427
-
-
Arinobu, Y.1
Mizuno, S.-I.2
Chong, Y.3
Shigematsu, H.4
Iino, T.5
Iwasaki, H.6
Graf, T.7
Mayfield, R.8
Chan, S.9
Kastner, P.10
Akashi, K.11
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