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H2A.Z 促进早期复制起始点的许可和激活。

H2A.Z facilitates licensing and activation of early replication origins.

机构信息

National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Nature. 2020 Jan;577(7791):576-581. doi: 10.1038/s41586-019-1877-9. Epub 2019 Dec 25.

Abstract

DNA replication is a tightly regulated process that ensures the precise duplication of the genome during the cell cycle. In eukaryotes, the licensing and activation of replication origins are regulated by both DNA sequence and chromatin features. However, the chromatin-based regulatory mechanisms remain largely uncharacterized. Here we show that, in HeLa cells, nucleosomes containing the histone variant H2A.Z are enriched with histone H4 that is dimethylated on its lysine 20 residue (H4K20me2) and with bound origin-recognition complex (ORC). In vitro studies show that H2A.Z-containing nucleosomes bind directly to the histone lysine methyltransferase enzyme SUV420H1, promoting H4K20me2 deposition, which is in turn required for ORC1 binding. Genome-wide studies show that signals from H4K20me2, ORC1 and nascent DNA strands co-localize with H2A.Z, and that depletion of H2A.Z results in decreased H4K20me2, ORC1 and nascent-strand signals throughout the genome. H2A.Z-regulated replication origins have a higher firing efficiency and early replication timing compared with other origins. Our results suggest that the histone variant H2A.Z epigenetically regulates the licensing and activation of early replication origins and maintains replication timing through the SUV420H1-H4K20me2-ORC1 axis.

摘要

DNA 复制是一个受到严格调控的过程,它确保了基因组在细胞周期中精确地复制。在真核生物中,复制起点的许可和激活受到 DNA 序列和染色质特征的双重调控。然而,基于染色质的调控机制在很大程度上仍未被阐明。在这里,我们发现在 HeLa 细胞中,含有组蛋白变体 H2A.Z 的核小体富含组蛋白 H4,其赖氨酸 20 残基(H4K20me2)被二甲基化,并与起始识别复合物(ORC)结合。体外研究表明,含有 H2A.Z 的核小体直接与组蛋白赖氨酸甲基转移酶 SUV420H1 结合,促进 H4K20me2 的沉积,而这反过来又是 ORC1 结合所必需的。全基因组研究表明,H4K20me2、ORC1 和新生 DNA 链的信号与 H2A.Z 共定位,并且 H2A.Z 的耗竭导致整个基因组中 H4K20me2、ORC1 和新生链信号的减少。H2A.Z 调节的复制起点具有更高的启动效率和更早的复制起始时间。我们的研究结果表明,组蛋白变体 H2A.Z 通过 SUV420H1-H4K20me2-ORC1 轴,对早期复制起点的许可和激活进行表观遗传调控,并维持复制起始时间。

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