Department of Oncological Sciences, Mount Sinai School of Medicine, New York, NY, USA.
Cell Cycle. 2012 Sep 15;11(18):3504-12. doi: 10.4161/cc.21802. Epub 2012 Aug 23.
The differentiation of myeloid progenitors to mature, terminally differentiated cells is a highly regulated process. Here, we showed that conditional disruption of the c-myb proto-oncogene in adult mice resulted in dramatic reductions in CMP, GMP and MEP myeloid progenitors, leading to a reduction of neutrophils, basophils, monocytes and platelets in peripheral blood. In addition, c-myb plays a critical role at multiple stages of myeloid development, from multipotent CMP and bipotent GMP to unipotent CFU-G and CFU-M progenitor cells. c-myb controls the differentiation of these cells and is required for the proper commitment, maturation and normal differentiation of CMPs and GMPs. Specifically, c-myb regulates the precise commitment to the megakaryocytic and granulo-monocytic pathways and governs the granulocytic-monocytic lineage choice. c-myb is also required for the commitment along the granulocytic pathway for early myeloid progenitor cells and for the maturation of committed precursor cells along this pathway. On the other hand, disruption of the c-myb gene favors the commitment to the monocytic lineage, although monocytic development was abnormal with cells appearing more mature with atypical CD41 surface markers. These results demonstrate that c-myb plays a pivotal role in the regulation of multiple stages in adult myelogenesis.
髓系祖细胞向成熟、终末分化细胞的分化是一个高度受调控的过程。在这里,我们表明在成年小鼠中条件性破坏原癌基因 c-myb 导致 CMP、GMP 和 MEP 髓系祖细胞显著减少,导致外周血中性粒细胞、嗜碱性粒细胞、单核细胞和血小板减少。此外,c-myb 在髓系发育的多个阶段发挥关键作用,从多能性 CMP 和双能性 GMP 到单能性 CFU-G 和 CFU-M 祖细胞。c-myb 控制这些细胞的分化,是 CMP 和 GMP 适当定向、成熟和正常分化所必需的。具体而言,c-myb 调节向巨核细胞和粒单系途径的精确定向,并控制粒单系谱系选择。c-myb 还需要沿着粒细胞途径对早期髓系祖细胞进行定向,并沿着该途径对定向前体细胞进行成熟。另一方面,c-myb 基因的破坏有利于向单核细胞谱系的定向,尽管单核细胞发育异常,细胞出现更成熟的表型,具有非典型的 CD41 表面标志物。这些结果表明 c-myb 在调节成人髓系发生的多个阶段中发挥关键作用。