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组蛋白去乙酰化酶 1 和 2 与乙酰化阅读器 ATAD2 的相互平衡调节人细胞新生染色质组蛋白 H4 的乙酰化水平。

Mutual Balance of Histone Deacetylases 1 and 2 and the Acetyl Reader ATAD2 Regulates the Level of Acetylation of Histone H4 on Nascent Chromatin of Human Cells.

机构信息

University of Washington, Department of Pathology, Seattle, Washington, USA.

Altius Institute for Biomedical Sciences, Seattle, Washington, USA.

出版信息

Mol Cell Biol. 2020 Apr 13;40(9). doi: 10.1128/MCB.00421-19.

DOI:10.1128/MCB.00421-19
PMID:32015101
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7156220/
Abstract

Newly synthesized histone H4 that is incorporated into chromatin during DNA replication is acetylated on lysines 5 and 12. Histone deacetylase 1 (HDAC1) and HDAC2 are responsible for reducing H4 acetylation as chromatin matures. Using CRISPR-Cas9-generated - or -null fibroblasts, we determined that HDAC1 and HDAC2 do not fully compensate for each other in removing acetyls on H4 Proteomics of nascent chromatin and proximity ligation assays with newly replicated DNA revealed the binding of ATAD2, a bromodomain-containing posttranslational modification (PTM) reader that recognizes acetylated H4. ATAD2 is a transcription facilitator overexpressed in several cancers and in the simian virus 40 (SV40)-transformed human fibroblast model cell line used in this study. The recruitment of ATAD2 to nascent chromatin was increased in cells over the wild type, and ATAD2 depletion reduced the levels of nascent chromatin-associated, acetylated H4 in wild-type and cells. We propose that overexpressed ATAD2 shifts the balance of H4 acetylation by protecting this mark from removal and that HDAC2 but not HDAC1 can effectively compete with ATAD2 for the target acetyls. ATAD2 depletion also reduced global RNA synthesis and nascent DNA-associated RNA. A moderate dependence on ATAD2 for replication fork progression was noted only for cells overexpressing the protein.

摘要

新合成的组蛋白 H4 在 DNA 复制过程中被整合到染色质中,其赖氨酸 5 和 12 发生乙酰化。组蛋白去乙酰化酶 1(HDAC1)和 HDAC2 负责降低染色质成熟过程中 H4 的乙酰化水平。利用 CRISPR-Cas9 产生的 - 或 -null 成纤维细胞,我们确定 HDAC1 和 HDAC2 在去除 H4 上的乙酰基方面不能完全相互补偿。新生染色质的蛋白质组学和与新复制 DNA 的邻近连接测定显示,ATAD2 结合,ATAD2 是一种含有溴结构域的翻译后修饰(PTM)阅读器,可识别乙酰化的 H4。ATAD2 是几种癌症中过度表达的转录促进因子,也是本研究中使用的猴病毒 40(SV40)转化的人成纤维细胞模型细胞系中的一种。与野生型相比, 细胞中新生染色质的 ATAD2 募集增加,ATAD2 耗竭降低了野生型和 细胞中新生染色质相关的乙酰化 H4 水平。我们提出,过表达的 ATAD2 通过保护该标记物不被去除来改变 H4 乙酰化的平衡,并且 HDAC2 而不是 HDAC1 可以有效地与 ATAD2 竞争靶乙酰基。ATAD2 耗竭也降低了总 RNA 合成和新生 DNA 相关 RNA。仅在过度表达该蛋白的 细胞中,发现对 ATAD2 对复制叉进展有中等依赖性。

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