染色质
生物
组蛋白H1
乙酰化
核小体
组蛋白密码
组蛋白修饰酶
组蛋白
组蛋白H2A
细胞生物学
染色质重塑
组蛋白H4
DNA
分子生物学
遗传学
基因
作者
Yinglu Li,Zhiming Li,Liping Dong,Ming Tang,Ping Zhang,Chaohua Zhang,Ziyang Cao,Qian Zhu,Yongcan Chen,Hui Wang,Tianzhuo Wang,Danyu Lv,Lina Wang,Ying Zhao,Yang Yang,Haiying Wang,Hongquan Zhang,Robert G. Roeder,Wei‐Guo Zhu
摘要
Linker histone H1 has a key role in maintaining higher order chromatin structure and genome stability, but how H1 functions in these processes is elusive. Here, we report that acetylation of lysine 85 (K85) within the H1 globular domain is a critical post-translational modification that regulates chromatin organization. H1K85 is dynamically acetylated by the acetyltransferase PCAF in response to DNA damage, and this effect is counterbalanced by the histone deacetylase HDAC1. Notably, an acetylation-mimic mutation of H1K85 (H1K85Q) alters H1 binding to the nucleosome and leads to condensed chromatin as a result of increased H1 binding to core histones. In addition, H1K85 acetylation promotes heterochromatin protein 1 (HP1) recruitment to facilitate chromatin compaction. Consequently, H1K85 mutation leads to genomic instability and decreased cell survival upon DNA damage. Together, our data suggest a novel model whereby H1K85 acetylation regulates chromatin structure and preserves chromosome integrity upon DNA damage.
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