Binding of different histone marks differentially regulates the activity and specificity of polycomb repressive complex 2 (PRC2)

被引:169
作者
Xu, Chao [2 ]
Bian, Chuanbing [2 ]
Yang, Wei [3 ]
Galka, Marek [1 ]
Hui Ouyang [2 ]
Chen, Chen [4 ]
Qiu, Wei [2 ]
Liu, Huadong [1 ]
Jones, Amanda E. [3 ]
MacKenzie, Farrell [2 ]
Pan, Patricia [2 ,5 ]
Li, Shawn Shun-Cheng [1 ]
Wang, Hengbin [3 ]
Min, Jinrong [2 ,6 ]
机构
[1] Univ Western Ontario, Dept Biochem, Schulich Sch Med & Dent, London, ON N6A 5C1, Canada
[2] Univ Toronto, Struct Genom Consortium, Toronto, ON M5G 1L7, Canada
[3] Univ Alabama, Dept Biochem & Mol Genet, Birmingham, AL 35294 USA
[4] Mt Sinai Hosp, Samuel Lunenfeld Res Inst, Toronto, ON M5G 1X5, Canada
[5] Univ Toronto, Dept Med Biophys, Toronto, ON M5G 2M9, Canada
[6] Univ Toronto, Dept Physiol, Toronto, ON M5S 1A8, Canada
基金
英国惠康基金; 美国国家卫生研究院;
关键词
methyllysine-binding domain; WD40 repeat-containing protein; X-ray crystallography; H3; LYSINE-27; METHYLATION; STRUCTURAL BASIS; METHYLTRANSFERASE ACTIVITY; MOLECULAR REPLACEMENT; SILENCING MECHANISMS; UBIQUITIN LIGASE; PROTEIN WDR5; RECOGNITION; CHROMODOMAIN; EED;
D O I
10.1073/pnas.1008937107
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The polycomb repressive complex 2 (PRC2) is the major methyltransferase for H3K27 methylation, a modification critical for maintaining repressed gene expression programs throughout development. It has been previously shown that PRC2 maintains histone methylation patterns during DNA replication in part through its ability to bind to H3K27me3. However, the mechanism by which PRC2 recognizes H3K27me3 is unclear. Here we show that the WD40 domain of EED, a PRC2 component, is a methyllysine histone-binding domain. The crystal structures of apo-EED and EED in complex respectively with five different trimethyllysine histone peptides reveal that EED binds these peptides via the top face of its beta-propeller architecture. The ammonium group of the trimethyllysine is accommodated by an aromatic cage formed by three aromatic residues, while its aliphatic chain is flanked by a fourth aromatic residue. Our structural data provide an explanation for the preferential recognition of the Ala-Arg-Lys-Ser motif-containing trimethylated H3K27, H3K9, and H1K26 marks by EED over lower methylation states and other histone methyllysine marks. More importantly, we found that binding of different histone marks by EED differentially regulates the activity and specificity of PRC2. Whereas the H3K27me3 mark stimulates the histone methyltransferase activity of PRC2, the H1K26me3 mark inhibits PRC2 methyltransferase activity on the nucleosome. Moreover, H1K26me3 binding switches the specificity of PRC2 from methylating H3K27 to EED. In addition to determining the molecular basis of EED-methyllysine recognition, our work provides the biochemical characterization of how the activity of a histone methyltransferase is oppositely regulated by two histone marks.
引用
收藏
页码:19266 / 19271
页数:6
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