染色质
生物
表观基因组
组蛋白修饰酶
细胞生物学
支架/基质附着区域
嘉雅宠物
组蛋白密码
组蛋白
染色体复制控制
染色质重塑
二价染色质
DNA复制
遗传学
核小体
复制前复合体
真核细胞DNA复制
复制计时
多组蛋白
原点识别复合体
表观遗传学
芯片对芯片
计算生物学
表观遗传学
背景(考古学)
基因组
组蛋白H1
细胞分裂
芯片排序
回复
CTCF公司
染色体分离
DNA
作者
Leonie Kollenstart,Sebastian Jespersen Charlton,Anja Groth
标识
DOI:10.1146/annurev-biochem-082525-050024
摘要
The ability of cells to transmit information encoded in the genome, and its organization into chromatin across cell generations, is a cornerstone of eukaryotic life. Chromatin replication, the copying of the mammalian genome in its structural and functional chromatin context to maintain cell identity and fate, is fundamental to lifelong health and has important implications for cancer and aging. Here, we review the major breakthroughs in our understanding of chromatin dynamics during DNA replication, critical for genome and epigenome inheritance. We discuss how chromatin is disrupted at the replication fork and how the replication machinery ensures transmission of parental histones with their modifications to daughter DNA strands with high fidelity. We highlight how incorporation of new histones is integrated into this process to maintain chromatin integrity and functionality. Finally, we consider how these processes maintain gene expression programs and thus cellular identity and function across cell division throughout the organismal life span.
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