The transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-specific genes in B lymphocytes. By identifying 110 Pax5-repressed genes, we now demonstrate that Pax5 downregulates diverse biological activities including receptor signaling, cell adhesion, migration, transcriptional control, and cellular metabolism at B cell commitment. The T lymphoid or myeloid expression of these genes demonstrates that Pax5(-/-) pro-B cells and common lymphoid progenitors display lymphoid and myeloid promiscuity of gene expression. These lineage-inappropriate genes require continuous Pax5 activity for their repression, as they are reactivated in committed pro-B cells and mature B cells following conditional Pax5 deletion. Pax5-rep...
AbstractRecent studies have identified the transcription factor Pax5 as a critical determinant of co...
textabstractPAX5 is a tumor suppressor in B-ALL, while the role of PAX5 fusion proteins in B-ALL dev...
Lineage commitment and differentiation to a mature cell type are considered to be unidirectional and...
SummaryThe transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-spec...
The transcription factor Pax5 is required for many aspects of B-lymphopoiesis including lineage comm...
The transcription factor Pax5 is essential for commitment of lymphoid progenitors to the B lymphocyt...
SummaryPax5 is indispensable for the commitment of early lymphoid progenitors to the B cell lineage ...
The transcription factor Pax5 is essential for commitment to the B lineage as the development of the...
AbstractThe B lineage commitment factor Pax5 (BSAP) is expressed throughout B cell development. To i...
The transcription factor Pax5 is a critical regulator of B lymphocyte commitment and identity. In th...
Early B lymphopoiesis is marked by plasticity between the myeloid and B lineages. Recent work sugges...
The transcription factor PAX5 is a critical regulator of B-cell commitment and development. Although...
AbstractThe B lineage commitment factor Pax5 (BSAP) is exclusively expressed in B lymphocytes of the...
The transcription factor PAX5 is a critical regulator of B-cell commitment and development. Although...
SummaryPax5 is an essential regulator of B cell identity and function. Here, we used transgenesis an...
AbstractRecent studies have identified the transcription factor Pax5 as a critical determinant of co...
textabstractPAX5 is a tumor suppressor in B-ALL, while the role of PAX5 fusion proteins in B-ALL dev...
Lineage commitment and differentiation to a mature cell type are considered to be unidirectional and...
SummaryThe transcription factor Pax5 represses lineage-inappropriate genes and activates B cell-spec...
The transcription factor Pax5 is required for many aspects of B-lymphopoiesis including lineage comm...
The transcription factor Pax5 is essential for commitment of lymphoid progenitors to the B lymphocyt...
SummaryPax5 is indispensable for the commitment of early lymphoid progenitors to the B cell lineage ...
The transcription factor Pax5 is essential for commitment to the B lineage as the development of the...
AbstractThe B lineage commitment factor Pax5 (BSAP) is expressed throughout B cell development. To i...
The transcription factor Pax5 is a critical regulator of B lymphocyte commitment and identity. In th...
Early B lymphopoiesis is marked by plasticity between the myeloid and B lineages. Recent work sugges...
The transcription factor PAX5 is a critical regulator of B-cell commitment and development. Although...
AbstractThe B lineage commitment factor Pax5 (BSAP) is exclusively expressed in B lymphocytes of the...
The transcription factor PAX5 is a critical regulator of B-cell commitment and development. Although...
SummaryPax5 is an essential regulator of B cell identity and function. Here, we used transgenesis an...
AbstractRecent studies have identified the transcription factor Pax5 as a critical determinant of co...
textabstractPAX5 is a tumor suppressor in B-ALL, while the role of PAX5 fusion proteins in B-ALL dev...
Lineage commitment and differentiation to a mature cell type are considered to be unidirectional and...