<div><p>Hematopoietic stem cells are capable of self-renewal or differentiation along three main lineages: myeloid, erythroid, and lymphoid. One of the earliest lineage decisions for blood progenitor cells is whether to adopt the lymphoid or myeloid fate. Previous work had shown that myocyte enhancer factor 2C (MEF2C) is indispensable for the lymphoid fate decision, yet the specific mechanism of action remained unclear. Here, we have identified early B cell factor-1 (EBF1) as a co-regulator of gene expression with MEF2C. A genome-wide survey of MEF2C and EBF1 binding sites identified a subset of B cell-specific genes that they target. We also determined that the p38 MAPK pathway activates MEF2C to drive B cell differentiation. <i>Mef2c</i> ...
B lymphocyte differentiation is dependent on an intricate interplay of transcription factors and sig...
Class IIa histone deacetylase (HDAC) subfamily members are tissue-specific gene repressors with cruc...
All hematopoietic cells originate from hematopoietic stem cells (HSC) residing in the BM. The proces...
Hematopoietic stem cells are capable of self-renewal or differentiation along three main lineages: m...
B lymphocytes are an integral part of the adaptive immune system. Upon antigen binding to the B cell...
Genes encoding B lineage–restricted transcription factors are frequently mutated in B-lymphoid leuke...
DNA double strand break (DSB) repair is critical for generation of B-cell receptors, which are pre-r...
deficient serum response factor) tran-scription factor best known for its role in muscle and cardiov...
Alternative lineage restriction and B cell fate commitment require the transcription factor Pax5, bu...
Rearrangements that drive ectopic MEF2C expression have recurrently been found in patients with huma...
Myocyte enhancer factor 2B (MEF2B) is a transcription factor with somatic mutation hotspots at K4, Y...
AbstractThe transcription factors EBF and E2A are required at a similar step in early B cell differe...
B lymphocyte differentiation is dependent on an intricate interplay of transcription factors and sig...
Differentiation from hematopoietic stem cells to mature blood cells of different lineages is a conti...
Gene expression is critical for the development, patterning, and homeostasis of the organism. Precis...
B lymphocyte differentiation is dependent on an intricate interplay of transcription factors and sig...
Class IIa histone deacetylase (HDAC) subfamily members are tissue-specific gene repressors with cruc...
All hematopoietic cells originate from hematopoietic stem cells (HSC) residing in the BM. The proces...
Hematopoietic stem cells are capable of self-renewal or differentiation along three main lineages: m...
B lymphocytes are an integral part of the adaptive immune system. Upon antigen binding to the B cell...
Genes encoding B lineage–restricted transcription factors are frequently mutated in B-lymphoid leuke...
DNA double strand break (DSB) repair is critical for generation of B-cell receptors, which are pre-r...
deficient serum response factor) tran-scription factor best known for its role in muscle and cardiov...
Alternative lineage restriction and B cell fate commitment require the transcription factor Pax5, bu...
Rearrangements that drive ectopic MEF2C expression have recurrently been found in patients with huma...
Myocyte enhancer factor 2B (MEF2B) is a transcription factor with somatic mutation hotspots at K4, Y...
AbstractThe transcription factors EBF and E2A are required at a similar step in early B cell differe...
B lymphocyte differentiation is dependent on an intricate interplay of transcription factors and sig...
Differentiation from hematopoietic stem cells to mature blood cells of different lineages is a conti...
Gene expression is critical for the development, patterning, and homeostasis of the organism. Precis...
B lymphocyte differentiation is dependent on an intricate interplay of transcription factors and sig...
Class IIa histone deacetylase (HDAC) subfamily members are tissue-specific gene repressors with cruc...
All hematopoietic cells originate from hematopoietic stem cells (HSC) residing in the BM. The proces...