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Hbo1-Brd1/Brpf2 复合物负责 H3K14 的整体乙酰化,并且是胎肝红细胞生成所必需的。

The Hbo1-Brd1/Brpf2 complex is responsible for global acetylation of H3K14 and required for fetal liver erythropoiesis.

机构信息

Department of Cellular and Molecular Medicine, Graduate School of Medicine, Graduate School of Pharmaceutical, Sciences, Chiba University, Chiba, Japan.

出版信息

Blood. 2011 Sep 1;118(9):2443-53. doi: 10.1182/blood-2011-01-331892. Epub 2011 Jul 13.

Abstract

The histone acetyltransferases (HATs) of the MYST family include TIP60, HBO1, MOZ/MORF, and MOF and function in multisubunit protein complexes. Bromodomain-containing protein 1 (BRD1), also known as BRPF2, has been considered a subunit of the MOZ/MORF H3 HAT complex based on analogy with BRPF1 and BRPF3. However, its physiologic function remains obscure. Here we show that BRD1 forms a novel HAT complex with HBO1 and regulates erythropoiesis. Brd1-deficient embryos showed severe anemia because of impaired fetal liver erythropoiesis. Biochemical analyses revealed that BRD1 bridges HBO1 and its activator protein, ING4. Genome-wide mapping in erythroblasts demonstrated that BRD1 and HBO1 largely colocalize in the genome and target key developmental regulator genes. Of note, levels of global acetylation of histone H3 at lysine 14 (H3K14) were profoundly decreased in Brd1-deficient erythroblasts and depletion of Hbo1 similarly affected H3K14 acetylation. Impaired erythropoiesis in the absence of Brd1 accompanied reduced expression of key erythroid regulator genes, including Gata1, and was partially restored by forced expression of Gata1. Our findings suggest that the Hbo1-Brd1 complex is the major H3K14 HAT required for transcriptional activation of erythroid developmental regulator genes.

摘要

组蛋白乙酰转移酶(HATs)的 MYST 家族包括 TIP60、HBO1、MOZ/MORF 和 MOF,它们在多亚基蛋白复合物中发挥作用。溴结构域蛋白 1(BRD1),也称为 BRPF2,基于与 BRPF1 和 BRPF3 的类比,被认为是 MOZ/MORF H3 HAT 复合物的一个亚基。然而,其生理功能仍不清楚。在这里,我们显示 BRD1 与 HBO1 形成一种新型 HAT 复合物,并调节红细胞生成。Brd1 缺陷的胚胎由于胎儿肝脏红细胞生成受损而表现出严重贫血。生化分析表明 BRD1 桥接 HBO1 及其激活蛋白 ING4。在红细胞中的全基因组作图表明 BRD1 和 HBO1 主要在基因组中相互作用,并靶向关键的发育调节基因。值得注意的是,Brd1 缺陷的红细胞中组蛋白 H3 赖氨酸 14(H3K14)的整体乙酰化水平显著降低,而 Hbo1 的耗竭同样影响 H3K14 乙酰化。在 Brd1 缺失的情况下,红细胞生成受损伴随着关键红细胞调节基因的表达减少,包括 Gata1,而过表达 Gata1 则部分恢复了这些基因的表达。我们的研究结果表明,Hbo1-Brd1 复合物是转录激活红细胞发育调节基因所必需的主要 H3K14 HAT。

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