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组蛋白赖氨酸乙酰转移酶 HBO1(KAT7)调节造血干细胞静止和自我更新。

The histone lysine acetyltransferase HBO1 (KAT7) regulates hematopoietic stem cell quiescence and self-renewal.

机构信息

Walter and Eliza Hall Institute of Medical Research, Melbourne, VIC, Australia; and.

Department of Medical Biology and.

出版信息

Blood. 2022 Feb 10;139(6):845-858. doi: 10.1182/blood.2021013954.

Abstract

The histone acetyltransferase HBO1 (MYST2, KAT7) is indispensable for postgastrulation development, histone H3 lysine 14 acetylation (H3K14Ac), and the expression of embryonic patterning genes. In this study, we report the role of HBO1 in regulating hematopoietic stem cell function in adult hematopoiesis. We used 2 complementary cre-recombinase transgenes to conditionally delete Hbo1 (Mx1-Cre and Rosa26-CreERT2). Hbo1-null mice became moribund due to hematopoietic failure with pancytopenia in the blood and bone marrow 2 to 6 weeks after Hbo1 deletion. Hbo1-deleted bone marrow cells failed to repopulate hemoablated recipients in competitive transplantation experiments. Hbo1 deletion caused a rapid loss of hematopoietic progenitors. The numbers of lineage-restricted progenitors for the erythroid, myeloid, B-, and T-cell lineages were reduced. Loss of HBO1 resulted in an abnormally high rate of recruitment of quiescent hematopoietic stem cells (HSCs) into the cell cycle. Cycling HSCs produced progenitors at the expense of self-renewal, which led to the exhaustion of the HSC pool. Mechanistically, genes important for HSC functions were downregulated in HSC-enriched cell populations after Hbo1 deletion, including genes essential for HSC quiescence and self-renewal, such as Mpl, Tek(Tie-2), Gfi1b, Egr1, Tal1(Scl), Gata2, Erg, Pbx1, Meis1, and Hox9, as well as genes important for multipotent progenitor cells and lineage-specific progenitor cells, such as Gata1. HBO1 was required for H3K14Ac through the genome and particularly at gene loci required for HSC quiescence and self-renewal. Our data indicate that HBO1 promotes the expression of a transcription factor network essential for HSC maintenance and self-renewal in adult hematopoiesis.

摘要

组蛋白乙酰转移酶 HBO1(MYST2,KAT7)对于原肠胚后发育、组蛋白 H3 赖氨酸 14 乙酰化(H3K14Ac)和胚胎模式形成基因的表达是必不可少的。在这项研究中,我们报告了 HBO1 在调节成年造血中造血干细胞功能中的作用。我们使用了 2 种互补的 cre 重组酶转基因来条件性删除 Hbo1(Mx1-Cre 和 Rosa26-CreERT2)。Hbo1 缺失的小鼠在 Hbo1 删除后 2 至 6 周内由于血液和骨髓中的全血细胞减少而病危。在竞争性移植实验中,Hbo1 缺失的骨髓细胞未能再植入造血衰竭的受者中。Hbo1 缺失导致造血祖细胞迅速丢失。红系、髓系、B 系和 T 系谱系受限祖细胞的数量减少。HBO1 的缺失导致静止造血干细胞(HSCs)异常高比例地进入细胞周期。循环 HSCs 以自我更新为代价产生祖细胞,导致 HSC 池耗尽。从机制上讲,Hbo1 缺失后,HSC 富集细胞群体中的重要 HSC 功能基因下调,包括 HSC 静止和自我更新所必需的基因,如 Mpl、Tek(Tie-2)、Gfi1b、Egr1、Tal1(Scl)、Gata2、Erg、Pbx1、Meis1 和 Hox9,以及多能祖细胞和谱系特异性祖细胞所必需的基因,如 Gata1。HBO1 通过基因组,特别是在 HSC 静止和自我更新所必需的基因座上,需要 H3K14Ac。我们的数据表明,HBO1 促进了在成人造血中维持和自我更新造血干细胞所必需的转录因子网络的表达。

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