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哺乳动物 DNA 甲基转移酶塑造的 DNA 复制的时间顺序。

The Temporal Order of DNA Replication Shaped by Mammalian DNA Methyltransferases.

机构信息

Laboratory of Molecular and Cellular Biology, Graduate School of Bioresources, Mie University, Tsu, Mie 514-8507, Japan.

Division of Natural Sciences, New College of Florida, Sarasota, FL 34243, USA.

出版信息

Cells. 2021 Jan 29;10(2):266. doi: 10.3390/cells10020266.

Abstract

Multiple epigenetic pathways underlie the temporal order of DNA replication (replication timing) in the contexts of development and disease. DNA methylation by DNA methyltransferases (Dnmts) and downstream chromatin reorganization and transcriptional changes are thought to impact DNA replication, yet this remains to be comprehensively tested. Using cell-based and genome-wide approaches to measure replication timing, we identified a number of genomic regions undergoing subtle but reproducible replication timing changes in various -mutant mouse embryonic stem (ES) cell lines that included a cell line with a drug-inducible Dnmt3a2 expression system. Replication timing within pericentromeric heterochromatin (PH) was shown to be correlated with redistribution of H3K27me3 induced by DNA hypomethylation: Later replicating PH coincided with H3K27me3-enriched regions. In contrast, this relationship with H3K27me3 was not evident within chromosomal arm regions undergoing either early-to-late (EtoL) or late-to-early (LtoE) switching of replication timing upon loss of the Dnmts. Interestingly, Dnmt-sensitive transcriptional up- and downregulation frequently coincided with earlier and later shifts in replication timing of the chromosomal arm regions, respectively. Our study revealed the previously unrecognized complex and diverse effects of the Dnmts loss on the mammalian DNA replication landscape.

摘要

多种表观遗传途径是发育和疾病背景下 DNA 复制(复制时间)的时间顺序的基础。DNA 甲基转移酶 (Dnmts) 的 DNA 甲基化以及下游染色质重排和转录变化被认为会影响 DNA 复制,但这仍需要全面测试。我们使用基于细胞和全基因组的方法来测量复制时间,在各种 -突变的小鼠胚胎干细胞 (ES) 细胞系中发现了许多基因组区域发生微妙但可重复的复制时间变化,其中包括一个具有药物诱导的 Dnmt3a2 表达系统的细胞系。着丝粒周围异染色质 (PH) 内的复制时间与 DNA 低甲基化诱导的 H3K27me3 重新分布相关:复制时间较晚的 PH 与富含 H3K27me3 的区域重合。相比之下,在 Dnmts 缺失时,染色体臂区域经历早期到晚期 (EtoL) 或晚期到早期 (LtoE) 复制时间转换时,与 H3K27me3 之间没有这种关系。有趣的是,Dnmt 敏感的转录上调和下调经常与染色体臂区域的复制时间更早和更晚的变化同时发生。我们的研究揭示了 Dnmts 缺失对哺乳动物 DNA 复制景观的先前未被认识到的复杂和多样化影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c89d/7911666/369689962b07/cells-10-00266-g001.jpg

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