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B-myb is an essential regulator of hematopoietic stem cell and myeloid progenitor cell development.


ABSTRACT: The B-myb (MYBL2) gene is a member of the MYB family of transcription factors and is involved in cell cycle regulation, DNA replication, and maintenance of genomic integrity. However, its function during adult development and hematopoiesis is unknown. We show here that conditional inactivation of B-myb in vivo results in depletion of the hematopoietic stem cell (HSC) pool, leading to profound reductions in mature lymphoid, erythroid, and myeloid cells. This defect is autonomous to the bone marrow and is first evident in stem cells, which accumulate in the S and G2/M phases. B-myb inactivation also causes defects in the myeloid progenitor compartment, consisting of depletion of common myeloid progenitors but relative sparing of granulocyte-macrophage progenitors. Microarray studies indicate that B-myb-null LSK(+) cells differentially express genes that direct myeloid lineage development and commitment, suggesting that B-myb is a key player in controlling cell fate. Collectively, these studies demonstrate that B-myb is essential for HSC and progenitor maintenance and survival during hematopoiesis.

SUBMITTER: Baker SJ 

PROVIDER: S-EPMC3939923 | biostudies-literature | 2014 Feb

REPOSITORIES: biostudies-literature

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B-myb is an essential regulator of hematopoietic stem cell and myeloid progenitor cell development.

Baker Stacey J SJ   Ma'ayan Avi A   Lieu Yen K YK   John Premila P   Reddy M V Ramana MV   Chen Edward Y EY   Duan Qiaonan Q   Snoeck Hans-Willem HW   Reddy E Premkumar EP  

Proceedings of the National Academy of Sciences of the United States of America 20140210 8


The B-myb (MYBL2) gene is a member of the MYB family of transcription factors and is involved in cell cycle regulation, DNA replication, and maintenance of genomic integrity. However, its function during adult development and hematopoiesis is unknown. We show here that conditional inactivation of B-myb in vivo results in depletion of the hematopoietic stem cell (HSC) pool, leading to profound reductions in mature lymphoid, erythroid, and myeloid cells. This defect is autonomous to the bone marro  ...[more]

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