SummaryPax5 is an essential regulator of B cell identity and function. Here, we used transgenesis and deletion mapping to identify a potent enhancer in intron 5 of the Pax5 locus. This enhancer in combination with the promoter region was sufficient to recapitulate the B lymphoid expression of Pax5. The enhancer was silenced by DNA methylation in embryonic stem cells, but became activated in multipotent hematopoietic progenitors. It contained functional binding sites for the transcription factors PU.1, IRF4, IRF8, and NF-κB, suggesting that these regulators contribute to sequential enhancer activation in hematopoietic progenitors and during B cell development. In contrast, the promoter region was repressed by Polycomb group proteins in non-B...
B lymphocyte development is dependent on the interplay between the chromatin landscape and lineage-s...
During the last decades, many studies have investigated the transcriptional and epigenetic regulatio...
Early B lymphopoiesis is marked by plasticity between the myeloid and B lineages. Recent work sugges...
SummaryPax5 is an essential regulator of B cell identity and function. Here, we used transgenesis an...
The transcription factor Pax5 is essential for commitment of lymphoid progenitors to the B lymphocyt...
The transcription factor Pax5 is required for many aspects of B-lymphopoiesis including lineage comm...
SummaryThe transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-spec...
AbstractThe B lineage commitment factor Pax5 (BSAP) is exclusively expressed in B lymphocytes of the...
B lymphocytes are generated from hematopoietic stem cells in a series of steps controlled by transcr...
Alternative lineage restriction and B cell fate commitment require the transcription factor Pax5, bu...
Genes encoding B lineage–restricted transcription factors are frequently mutated in B-lymphoid leuke...
The generation of B lymphocyte precursors is dependent on the combinatorial action of the transcript...
The transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-specific ge...
The transcription factor Pax5 is a critical regulator of B lymphocyte commitment and identity. In th...
AbstractThe generation of B lymphocyte precursors is dependent on the combinatorial action of the tr...
B lymphocyte development is dependent on the interplay between the chromatin landscape and lineage-s...
During the last decades, many studies have investigated the transcriptional and epigenetic regulatio...
Early B lymphopoiesis is marked by plasticity between the myeloid and B lineages. Recent work sugges...
SummaryPax5 is an essential regulator of B cell identity and function. Here, we used transgenesis an...
The transcription factor Pax5 is essential for commitment of lymphoid progenitors to the B lymphocyt...
The transcription factor Pax5 is required for many aspects of B-lymphopoiesis including lineage comm...
SummaryThe transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-spec...
AbstractThe B lineage commitment factor Pax5 (BSAP) is exclusively expressed in B lymphocytes of the...
B lymphocytes are generated from hematopoietic stem cells in a series of steps controlled by transcr...
Alternative lineage restriction and B cell fate commitment require the transcription factor Pax5, bu...
Genes encoding B lineage–restricted transcription factors are frequently mutated in B-lymphoid leuke...
The generation of B lymphocyte precursors is dependent on the combinatorial action of the transcript...
The transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-specific ge...
The transcription factor Pax5 is a critical regulator of B lymphocyte commitment and identity. In th...
AbstractThe generation of B lymphocyte precursors is dependent on the combinatorial action of the tr...
B lymphocyte development is dependent on the interplay between the chromatin landscape and lineage-s...
During the last decades, many studies have investigated the transcriptional and epigenetic regulatio...
Early B lymphopoiesis is marked by plasticity between the myeloid and B lineages. Recent work sugges...