Structural Biology Department, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.
Annu Rev Biochem. 2013;82:81-118. doi: 10.1146/annurev-biochem-072711-165700.
This review focuses on a structure-based analysis of histone posttranslational modification (PTM) readout, where the PTMs serve as docking sites for reader modules as part of larger complexes displaying chromatin modifier and remodeling activities, with the capacity to alter chromatin architecture and templated processes. Individual topics addressed include the diversity of reader-binding pocket architectures and common principles underlying readout of methyl-lysine and methyl-arginine marks, their unmodified counterparts, as well as acetyl-lysine and phosphoserine marks. The review also discusses the impact of multivalent readout of combinations of PTMs localized at specific genomic sites by linked binding modules on processes ranging from gene transcription to repair. Additional topics include cross talk between histone PTMs, histone mimics, epigenetic-based diseases, and drug-based therapeutic intervention. The review ends by highlighting new initiatives and advances, as well as future challenges, toward the promise of enhancing our structural and mechanistic understanding of the readout of histone PTMs at the nucleosomal level.
本文综述了基于结构的组蛋白翻译后修饰(PTM)读出分析,其中 PTM 作为阅读器模块的对接位点,作为显示染色质修饰和重塑活性的更大复合物的一部分,具有改变染色质结构和模板化过程的能力。讨论的个别主题包括阅读器结合口袋结构的多样性以及读取甲基赖氨酸和甲基精氨酸标记物、其未修饰对应物以及乙酰赖氨酸和磷酸丝氨酸标记物的共同原则。该综述还讨论了通过链接结合模块在特定基因组位点定位的 PTM 组合的多价读出对从基因转录到修复等过程的影响。其他主题包括组蛋白 PTM 之间的串扰、组蛋白模拟物、基于表观遗传学的疾病和基于药物的治疗干预。该综述最后强调了新的举措和进展,以及未来的挑战,以期提高我们对核小体水平组蛋白 PTM 读出的结构和机制理解的承诺。