The Walter and Eliza Hall Institute of Medical Research, Parkville, Victoria, Australia.
Mol Cell Biol. 2011 Feb;31(4):845-60. doi: 10.1128/MCB.00159-10. Epub 2010 Dec 13.
We report here that the MYST histone acetyltransferase HBO1 (histone acetyltransferase bound to ORC; MYST2/KAT7) is essential for postgastrulation mammalian development. Lack of HBO1 led to a more than 90% reduction of histone 3 lysine 14 (H3K14) acetylation, whereas no reduction of acetylation was detected at other histone residues. The decrease in H3K14 acetylation was accompanied by a decrease in expression of the majority of genes studied. However, some genes, in particular genes regulating embryonic patterning, were more severely affected than "housekeeping" genes. Development of HBO1-deficient embryos was arrested at the 10-somite stage. Blood vessels, mesenchyme, and somites were disorganized. In contrast to previous studies that reported cell cycle arrest in HBO1-depleted cultured cells, no defects in DNA replication or cell proliferation were seen in Hbo1 mutant embryo primary fibroblasts or immortalized fibroblasts. Rather, a high rate of cell death and DNA fragmentation was observed in Hbo1 mutant embryos, resulting initially in the degeneration of mesenchymal tissues and ultimately in embryonic lethality. In conclusion, the primary role of HBO1 in development is that of a transcriptional activator, which is indispensable for H3K14 acetylation and for the normal expression of essential genes regulating embryonic development.
我们在此报告,组蛋白乙酰转移酶 MYST 家族的 HBO1(与 ORC 结合的组蛋白乙酰转移酶;MYST2/KAT7)对于原肠胚后哺乳动物的发育是必需的。缺乏 HBO1 导致组蛋白 3 赖氨酸 14(H3K14)乙酰化减少超过 90%,而其他组蛋白残基的乙酰化没有减少。H3K14 乙酰化的减少伴随着大多数研究基因表达的减少。然而,一些基因,特别是调节胚胎模式形成的基因,比“管家”基因受到的影响更为严重。缺乏 HBO1 的胚胎发育在 10 体节阶段被阻止。血管、间质和体节排列紊乱。与先前报道 HBO1 耗尽的培养细胞中细胞周期停滞的研究不同,在 Hbo1 突变体胚胎原代成纤维细胞或永生化成纤维细胞中没有观察到 DNA 复制或细胞增殖的缺陷。相反,在 Hbo1 突变体胚胎中观察到高细胞死亡率和 DNA 片段化,最初导致间质组织退化,最终导致胚胎致死。总之,HBO1 在发育中的主要作用是作为转录激活剂,它对于 H3K14 乙酰化和调节胚胎发育的必需基因的正常表达是不可或缺的。