The critical role of histone H2A-deubiquitinase Mysm1 in hematopoiesis and lymphocyte differentiation

组蛋白H2A-去泛素化酶Mysm1在造血和淋巴细胞分化中的关键作用

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作者:Anastasia Nijnik, Simon Clare, Christine Hale, Claire Raisen, Rebecca E McIntyre, Kosuke Yusa, Aaron R Everitt, Lynda Mottram, Christine Podrini, Mark Lucas, Jeanne Estabel, David Goulding; Sanger Institute Microarray Facility; Sanger Mouse Genetics Project; Niels Adams, Ramiro Ramirez-Solis, Jacqui

Abstract

Stem cell differentiation and lineage specification depend on coordinated programs of gene expression, but our knowledge of the chromatin-modifying factors regulating these events remains incomplete. Ubiquitination of histone H2A (H2A-K119u) is a common chromatin modification associated with gene silencing, and controlled by the ubiquitin-ligase polycomb repressor complex 1 (PRC1) and H2A-deubiquitinating enzymes (H2A-DUBs). The roles of H2A-DUBs in mammalian development, stem cells, and hematopoiesis have not been addressed. Here we characterized an H2A-DUB targeted mouse line Mysm1(tm1a/tm1a) and demonstrated defects in BM hematopoiesis, resulting in lymphopenia, anemia, and thrombocytosis. Development of lymphocytes was impaired from the earliest stages of their differentiation, and there was also a depletion of erythroid cells and a defect in erythroid progenitor function. These phenotypes resulted from a cell-intrinsic requirement for Mysm1 in the BM. Importantly, Mysm1(tm1a/tm1a) HSCs were functionally impaired, and this was associated with elevated levels of reactive oxygen species, γH2AX DNA damage marker, and p53 protein in the hematopoietic progenitors. Overall, these data establish a role for Mysm1 in the maintenance of BM stem cell function, in the control of oxidative stress and genetic stability in hematopoietic progenitors, and in the development of lymphoid and erythroid lineages.

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