Cell fate depends on the interplay between chromatin regulators and transcription factors. Here we show that activity of the Mi-2β nucleosome-remodeling and histone-deacetylase (NuRD) complex was controlled by the Ikaros family of lymphoid lineage-determining proteins. Ikaros, an integral component of the NuRD complex in lymphocytes, tethered this complex to active genes encoding molecules involved in lymphoid differentiation. Loss of Ikaros DNA-binding activity caused a local increase in chromatin remodeling and histone deacetylation and suppression of lymphoid cell-specific gene expression. Without Ikaros, the NuRD complex also redistributed to transcriptionally poised genes that were not targets of Ikaros (encoding molecules involved in ...
T-cell development is accompanied by epigenetic changes that ensure the silencing of stem cell-relat...
In plants, as in mammals, mutations in SNF2-like DNA helicases/ATPases were shown to affect not only...
Differentiation of mammalian pluripotent cells involves large-scale changes in transcription and, am...
Cell fate decisions depend on the interplay between chromatin regulators and transcription factors. ...
AbstractThe Ikaros gene family encodes zinc finger DNA-binding proteins essential for lineage determ...
IKAROS is a critical regulator of hematopoietic cell fate and its dynamic expression pattern is requ...
Differentiation of lineage-committed cells from multipotent progenitors requires the establishment o...
<div><p>IKAROS is a critical regulator of hematopoietic cell fate and its dynamic expression pattern...
Chromatin remodeling complexes play essential roles in metazoan development through widespread contr...
Differentiation of lineage-committed cells from multipotent progenitors requires establishment of ac...
Dynamic changes in chromatin structure through ATP-dependent remodeling and covalent modifications o...
In plants, as in mammals, mutations in SNF2-like DNA helicases/ATPases were shown to affect not only...
Dynamic changes in chromatin structure through ATP-dependent remodeling and covalent modifications o...
Dynamic changes in chromatin structure through ATP-dependent remodeling and covalent modifications o...
The Ikaros family of DNA binding proteins are critical regulators of lymphocyte differentiation. In ...
T-cell development is accompanied by epigenetic changes that ensure the silencing of stem cell-relat...
In plants, as in mammals, mutations in SNF2-like DNA helicases/ATPases were shown to affect not only...
Differentiation of mammalian pluripotent cells involves large-scale changes in transcription and, am...
Cell fate decisions depend on the interplay between chromatin regulators and transcription factors. ...
AbstractThe Ikaros gene family encodes zinc finger DNA-binding proteins essential for lineage determ...
IKAROS is a critical regulator of hematopoietic cell fate and its dynamic expression pattern is requ...
Differentiation of lineage-committed cells from multipotent progenitors requires the establishment o...
<div><p>IKAROS is a critical regulator of hematopoietic cell fate and its dynamic expression pattern...
Chromatin remodeling complexes play essential roles in metazoan development through widespread contr...
Differentiation of lineage-committed cells from multipotent progenitors requires establishment of ac...
Dynamic changes in chromatin structure through ATP-dependent remodeling and covalent modifications o...
In plants, as in mammals, mutations in SNF2-like DNA helicases/ATPases were shown to affect not only...
Dynamic changes in chromatin structure through ATP-dependent remodeling and covalent modifications o...
Dynamic changes in chromatin structure through ATP-dependent remodeling and covalent modifications o...
The Ikaros family of DNA binding proteins are critical regulators of lymphocyte differentiation. In ...
T-cell development is accompanied by epigenetic changes that ensure the silencing of stem cell-relat...
In plants, as in mammals, mutations in SNF2-like DNA helicases/ATPases were shown to affect not only...
Differentiation of mammalian pluripotent cells involves large-scale changes in transcription and, am...