A core erythroid transcriptional network is repressed by a master regulator of myelo-lymphoid differentiation
Published 2012 View Full Article
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Title
A core erythroid transcriptional network is repressed by a master regulator of myelo-lymphoid differentiation
Authors
Keywords
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Journal
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
Volume 109, Issue 10, Pages 3832-3837
Publisher
Proceedings of the National Academy of Sciences
Online
2012-02-23
DOI
10.1073/pnas.1121019109
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- The genome-wide dynamics of the binding of Ldb1 complexes during erythroid differentiation
- (2010) E. Soler et al. GENES & DEVELOPMENT
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- (2010) M. R. Tallack et al. GENOME RESEARCH
- Genome-wide identification of TAL1's functional targets: Insights into its mechanisms of action in primary erythroid cells
- (2010) M. T. Kassouf et al. GENOME RESEARCH
- Networking erythropoiesis: Figure 1.
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- A Key Commitment Step in Erythropoiesis Is Synchronized with the Cell Cycle Clock through Mutual Inhibition between PU.1 and S-Phase Progression
- (2010) Ramona Pop et al. PLOS BIOLOGY
- Graded repression of PU.1/Sfpi1 gene transcription by GATA factors regulates hematopoietic cell fate
- (2009) S. T. Chou et al. BLOOD
- Erythroid GATA1 function revealed by genome-wide analysis of transcription factor occupancy, histone modifications, and mRNA expression
- (2009) Y. Cheng et al. GENOME RESEARCH
- Erythropoiesis: Model systems, molecular regulators, and developmental programs
- (2009) Asterios S. Tsiftsoglou et al. IUBMB LIFE
- PU.1 Directly Regulatescdk6Gene Expression, Linking the Cell Proliferation and Differentiation Programs in Erythroid Cells
- (2009) Kevin S. Choe et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Discovering Hematopoietic Mechanisms through Genome-wide Analysis of GATA Factor Chromatin Occupancy
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- Insights into GATA-1-Mediated Gene Activation versus Repression via Genome-wide Chromatin Occupancy Analysis
- (2009) Ming Yu et al. MOLECULAR CELL
- Forcing cells to change lineages
- (2009) Thomas Graf et al. NATURE
- Preferential associations between co-regulated genes reveal a transcriptional interactome in erythroid cells
- (2009) Stefan Schoenfelder et al. NATURE GENETICS
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