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正确的H3K56乙酰化需要Rtt109:一种与延伸中的RNA聚合酶II相关的染色质标记。

Rtt109 is required for proper H3K56 acetylation: a chromatin mark associated with the elongating RNA polymerase II.

作者信息

Schneider Jessica, Bajwa Pratibha, Johnson Farley C, Bhaumik Sukesh R, Shilatifard Ali

机构信息

Department of Biochemistry, Saint Louis University School of Medicine, St. Louis, Missouri 63104, USA.

出版信息

J Biol Chem. 2006 Dec 8;281(49):37270-4. doi: 10.1074/jbc.C600265200. Epub 2006 Oct 17.

Abstract

Histone acetylation has been shown to be required for the proper regulation of many cellular processes including transcription, DNA repair, and chromatin assembly. Acetylation of histone H3 on lysine 56 (H3K56) occurs both during the premeiotic and mitotic S phase and persists throughout DNA damage repair. To learn more about the molecular mechanism of H3K56 acetylation and factors required for this process, we surveyed the genome of the yeast Saccharomyces cerevisiae to identify genes necessary for this process. A comparative global proteomic screen identified several factors required for global H3K56 acetylation, which included histone chaperone Asf1 and a protein of an unknown function Rtt109 but not Spt10. Our results indicate that the loss of Rtt109 results in the loss of H3K56 acetylation, both on bulk histone and on chromatin, similar to that of asf1Delta or the K56Q mutation. RTT109 deletion exhibits sensitivity to DNA damaging agents similar to that of asf1Delta and H3K56Q mutants. Furthermore, Rtt109 and H3K56 acetylation appear to correlate with actively transcribed genes and associate with the elongating form of polymerase II in yeast. This histone modification is also associated with some of the transcriptionally active puff sites in Drosophila. Our results indicate a new role for the Rtt109 protein in the proper regulation of H3K56 acetylation.

摘要

组蛋白乙酰化已被证明是许多细胞过程正常调控所必需的,这些过程包括转录、DNA修复和染色质组装。组蛋白H3赖氨酸56位点(H3K56)的乙酰化在减数分裂前和有丝分裂的S期均会发生,并在整个DNA损伤修复过程中持续存在。为了更多地了解H3K56乙酰化的分子机制以及该过程所需的因子,我们对酿酒酵母的基因组进行了研究,以鉴定该过程所必需的基因。一项比较性的全基因组蛋白质组学筛选确定了几个全局H3K56乙酰化所需的因子,其中包括组蛋白伴侣Asf1和一个功能未知的蛋白质Rtt109,但不包括Spt10。我们的结果表明,Rtt109的缺失会导致整体组蛋白和染色质上H3K56乙酰化的丧失,这与asf1Delta或K56Q突变类似。RTT109缺失表现出对DNA损伤剂的敏感性,类似于asf1Delta和H3K56Q突变体。此外,Rtt109和H3K56乙酰化似乎与活跃转录的基因相关,并与酵母中聚合酶II的延伸形式相关联。这种组蛋白修饰也与果蝇中一些转录活跃的疏松位点相关。我们的结果表明Rtt109蛋白在H3K56乙酰化的正确调控中具有新的作用。

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