Aged hematopoietic stem cells (HSCs) undergo biased lineage priming and differentiation toward production of myeloid cells. A comprehensive understanding of gene regulatory mechanisms causing HSC aging is needed to devise new strategies to sustainably improve immune function in aged individuals. Here, a focused short hairpin RNA screen of epigenetic factors reveals that the histone acetyltransferase Kat6b regulates myeloid cell production from hematopoietic progenitor cells. Within the stem and progenitor cell compartment, Kat6b is highly expressed in long-term (LT)-HSCs and is significantly decreased with aging at the transcript and protein levels. Knockdown of Kat6b in young LT-HSCs causes skewed production of myeloid cells at the expense of erythroid cells both in vitro and in vivo. Transcriptome analysis identifies enrichment of aging and macrophage-associated gene signatures alongside reduced expression of self-renewal and multilineage priming signatures. Together, our work identifies KAT6B as a novel epigenetic regulator of hematopoietic differentiation and a target to improve aged immune function.

译文

衰老的造血干细胞 (hsc) 经历偏向的谱系引发和分化,向髓系细胞的产生分化。需要全面了解导致HSC衰老的基因调控机制,以设计新的策略来可持续地改善老年人的免疫功能。在这里,表观遗传因子的聚焦短发夹RNA筛选揭示了组蛋白乙酰转移酶Kat6b调节造血祖细胞产生的髓系细胞。在干细胞和祖细胞区室中,Kat6b在长期 (LT)-hsc中高度表达,并且随着转录本和蛋白质水平的老化而显着降低。在年轻的LT-hsc中敲除Kat6b会导致髓样细胞产生偏斜,而在体外和体内均牺牲红系细胞。转录组分析确定了衰老和巨噬细胞相关基因特征的富集,以及自我更新和多谱系引发特征的表达减少。我们的工作共同确定KAT6B是造血分化的新型表观遗传调节剂,也是改善老年免疫功能的靶标。

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