Histone H3.3 phosphorylation amplifies stimulation-induced transcription

组蛋白H3 染色质 细胞生物学 组蛋白 转录协同调节子 染色质重塑 加压器 组蛋白甲基转移酶 组蛋白H2A 组蛋白甲基化 抄写(语言学) 转录因子 生物 遗传学 组蛋白密码 核小体 基因 基因表达 抑制因子 DNA甲基化 哲学 语言学
作者
Anja Armache,Shuang Yang,Alexia Martínez de Paz,Lexi Robbins,Ceyda Durmaz,Jin‐Gyu Cheong,Arjun Ravishankar,Andrew W. Daman,Dughan Ahimovic,Thaís Klevorn,Yuan Yue,Tanja Arslan,Shu Lin,Tanya Panchenko,Joel Hrit,Miao Wang,Samuel Thudium,Benjamin A. Garcia,Erica Korb,Karim‐Jean Armache,Scott B. Rothbart,Sandra B. Hake,C. David Allis,Haitao Li,Steven Z. Josefowicz
出处
期刊:Nature [Springer Nature]
卷期号:583 (7818): 852-857 被引量:103
标识
DOI:10.1038/s41586-020-2533-0
摘要

Complex organisms can rapidly induce select genes in response to diverse environmental cues. This regulation occurs in the context of large genomes condensed by histone proteins into chromatin. The sensing of pathogens by macrophages engages conserved signalling pathways and transcription factors to coordinate the induction of inflammatory genes1–3. Enriched integration of histone H3.3, the ancestral histone H3 variant, is a general feature of dynamically regulated chromatin and transcription4–7. However, how chromatin is regulated at induced genes, and what features of H3.3 might enable rapid and high-level transcription, are unknown. The amino terminus of H3.3 contains a unique serine residue (Ser31) that is absent in ‘canonical’ H3.1 and H3.2. Here we show that this residue, H3.3S31, is phosphorylated (H3.3S31ph) in a stimulation-dependent manner along rapidly induced genes in mouse macrophages. This selective mark of stimulation-responsive genes directly engages the histone methyltransferase SETD2, a component of the active transcription machinery, and ‘ejects’ the elongation corepressor ZMYND118,9. We propose that features of H3.3 at stimulation-induced genes, including H3.3S31ph, provide preferential access to the transcription apparatus. Our results indicate dedicated mechanisms that enable rapid transcription involving the histone variant H3.3, its phosphorylation, and both the recruitment and the ejection of chromatin regulators. The histone variant H3.3 is phosphorylated at Ser31 in induced genes, and this selective mark stimulates the histone methyltransferase SETD2 and ejects the ZMYND11 repressor, thus revealing a role for histone phosphorylation in amplifying de novo transcription.
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