The role of the chromatin remodeler Mi-2β in hematopoietic stem cell self-renewal and multilineage differentiation

Author:

Yoshida Toshimi,Hazan Idit,Zhang Jiangwen,Ng Samuel Y.,Naito Taku,Snippert Hugo J.,Heller Elizabeth J.,Qi Xiaoqing,Lawton Lee N.,Williams Christine J.,Georgopoulos Katia

Abstract

The ability of somatic stem cells to self-renew and differentiate into downstream lineages is dependent on specialized chromatin environments that keep stem cell-specific genes active and key differentiation factors repressed but poised for activation. The epigenetic factors that provide this type of regulation remain ill-defined. Here we provide the first evidence that the SNF2-like ATPase Mi-2β of the Nucleosome Remodeling Deacetylase (NuRD) complex is required for maintenance of and multilineage differentiation in the early hematopoietic hierarchy. Shortly after conditional inactivation of Mi-2β, there is an increase in cycling and a decrease in quiescence in an HSC (hematopoietic stem cell)-enriched bone marrow population. These cycling mutant cells readily differentiate into the erythroid lineage but not into the myeloid and lymphoid lineages. Together, these effects result in an initial expansion of mutant HSC and erythroid progenitors that are later depleted as more differentiated proerythroblasts accumulate at hematopoietic sites exhibiting features of erythroid leukemia. Examination of gene expression in the mutant HSC reveals changes in the expression of genes associated with self-renewal and lineage priming and a pivotal role of Mi-2β in their regulation. Thus, Mi-2β provides the hematopoietic system with immune cell capabilities as well as with an extensive regenerative capacity.

Publisher

Cold Spring Harbor Laboratory

Subject

Developmental Biology,Genetics

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