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Science
2021 Jan 22;3716527:. doi: 10.1126/science.abc3393.
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JARID2 and AEBP2 regulate PRC2 in the presence of H2AK119ub1 and other histone modifications.
Kasinath V, Beck C, Sauer P, Poepsel S, Kosmatka J, Faini M, Toso D, Aebersold R, Nogales E.
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Polycomb repressive complexes 1 and 2 (PRC1 and PRC2) cooperate to determine cell identity by epigenetic gene expression regulation. However, the mechanism of PRC2 recruitment by means of recognition of PRC1-mediated H2AK119ub1 remains poorly understood. Our PRC2 cryo-electron microscopy structure with cofactors JARID2 and AEBP2 bound to a H2AK119ub1-containing nucleosome reveals a bridge helix in EZH2 that connects the SET domain, H3 tail, and nucleosomal DNA. JARID2 and AEBP2 each interact with one ubiquitin and the H2A-H2B surface. JARID2 stimulates PRC2 through interactions with both the polycomb protein EED and the H2AK119-ubiquitin, whereas AEBP2 has an additional scaffolding role. The presence of these cofactors partially overcomes the inhibitory effect that H3K4me3 and H3K36me3 exert on core PRC2 (in the absence of cofactors). Our results support a key role for JARID2 and AEBP2 in the cross-talk between histone modifications and PRC2 activity.
Adams,
PHENIX: building new software for automated crystallographic structure determination.
2002, Pubmed
Adams,
PHENIX: building new software for automated crystallographic structure determination.
2002,
Pubmed Aiden,
Wilms tumor chromatin profiles highlight stem cell properties and a renal developmental network.
2010,
Pubmed Bepler,
Positive-unlabeled convolutional neural networks for particle picking in cryo-electron micrographs.
2019,
Pubmed Bernstein,
A bivalent chromatin structure marks key developmental genes in embryonic stem cells.
2006,
Pubmed Blackledge,
Variant PRC1 complex-dependent H2A ubiquitylation drives PRC2 recruitment and polycomb domain formation.
2014,
Pubmed Blackledge,
PRC1 Catalytic Activity Is Central to Polycomb System Function.
2020,
Pubmed Bracken,
Polycomb group proteins: navigators of lineage pathways led astray in cancer.
2009,
Pubmed Cao,
Role of histone H3 lysine 27 methylation in Polycomb-group silencing.
2002,
Pubmed Cooper,
Jarid2 binds mono-ubiquitylated H2A lysine 119 to mediate crosstalk between Polycomb complexes PRC1 and PRC2.
2016,
Pubmed Cox,
MaxQuant enables high peptide identification rates, individualized p.p.b.-range mass accuracies and proteome-wide protein quantification.
2008,
Pubmed Di Croce,
Transcriptional regulation by Polycomb group proteins.
2013,
Pubmed Dyer,
Reconstitution of nucleosome core particles from recombinant histones and DNA.
2004,
Pubmed Emsley,
Coot: model-building tools for molecular graphics.
2004,
Pubmed Finogenova,
Structural basis for PRC2 decoding of active histone methylation marks H3K36me2/3.
2020,
Pubmed
,
Xenbase Ge,
Nucleation and Propagation of Heterochromatin by the Histone Methyltransferase PRC2: Geometric Constraints and Impact of the Regulatory Subunit JARID2.
2019,
Pubmed Gradia,
MacroBac: New Technologies for Robust and Efficient Large-Scale Production of Recombinant Multiprotein Complexes.
2017,
Pubmed Grijzenhout,
Functional analysis of AEBP2, a PRC2 Polycomb protein, reveals a Trithorax phenotype in embryonic development and in ESCs.
2016,
Pubmed Han,
Long shelf-life streptavidin support-films suitable for electron microscopy of biological macromolecules.
2016,
Pubmed Hauri,
A High-Density Map for Navigating the Human Polycomb Complexome.
2016,
Pubmed Jiao,
Structural basis of histone H3K27 trimethylation by an active polycomb repressive complex 2.
2015,
Pubmed Justin,
Structural basis of oncogenic histone H3K27M inhibition of human polycomb repressive complex 2.
2016,
Pubmed Kalb,
Histone H2A monoubiquitination promotes histone H3 methylation in Polycomb repression.
2014,
Pubmed Kaneko,
Interactions between JARID2 and noncoding RNAs regulate PRC2 recruitment to chromatin.
2014,
Pubmed Kaneko,
PRC2 binds active promoters and contacts nascent RNAs in embryonic stem cells.
2013,
Pubmed Kasinath,
Structures of human PRC2 with its cofactors AEBP2 and JARID2.
2018,
Pubmed Kia,
SWI/SNF mediates polycomb eviction and epigenetic reprogramming of the INK4b-ARF-INK4a locus.
2008,
Pubmed Lee,
Automethylation of PRC2 promotes H3K27 methylation and is impaired in H3K27M pediatric glioma.
2019,
Pubmed Lee,
Distinct Stimulatory Mechanisms Regulate the Catalytic Activity of Polycomb Repressive Complex 2.
2018,
Pubmed Leitner,
Lysine-specific chemical cross-linking of protein complexes and identification of cross-linking sites using LC-MS/MS and the xQuest/xProphet software pipeline.
2014,
Pubmed Li,
Jarid2 and PRC2, partners in regulating gene expression.
2010,
Pubmed Long,
BALBES: a molecular-replacement pipeline.
2008,
Pubmed Long,
Generation of nonhydrolyzable ubiquitin-histone mimics.
2014,
Pubmed Margueron,
The Polycomb complex PRC2 and its mark in life.
2011,
Pubmed Mendenhall,
GC-rich sequence elements recruit PRC2 in mammalian ES cells.
2010,
Pubmed Mikkelsen,
Genome-wide maps of chromatin state in pluripotent and lineage-committed cells.
2007,
Pubmed Morgan,
Structural basis for histone H2B deubiquitination by the SAGA DUB module.
2016,
Pubmed
,
Xenbase Poepsel,
Cryo-EM structures of PRC2 simultaneously engaged with two functionally distinct nucleosomes.
2018,
Pubmed Sato,
Structural basis for specific recognition of Lys 63-linked polyubiquitin chains by tandem UIMs of RAP80.
2009,
Pubmed Scheres,
RELION: implementation of a Bayesian approach to cryo-EM structure determination.
2012,
Pubmed Schmitges,
Histone methylation by PRC2 is inhibited by active chromatin marks.
2011,
Pubmed Schuettengruber,
Recruitment of polycomb group complexes and their role in the dynamic regulation of cell fate choice.
2009,
Pubmed Simon,
The site-specific installation of methyl-lysine analogs into recombinant histones.
2007,
Pubmed
,
Xenbase Son,
Nucleosome-binding activities within JARID2 and EZH1 regulate the function of PRC2 on chromatin.
2013,
Pubmed Sun,
Structural and biochemical insights into human zinc finger protein AEBP2 reveals interactions with RBBP4.
2018,
Pubmed Tamburri,
Histone H2AK119 Mono-Ubiquitination Is Essential for Polycomb-Mediated Transcriptional Repression.
2020,
Pubmed Tang,
EMAN2: an extensible image processing suite for electron microscopy.
2007,
Pubmed Tate,
COSMIC: the Catalogue Of Somatic Mutations In Cancer.
2019,
Pubmed Vijay-Kumar,
Structure of ubiquitin refined at 1.8 A resolution.
1987,
Pubmed Wang,
Regulation of histone methylation by automethylation of PRC2.
2019,
Pubmed Wang,
Structure of the transcription coactivator SAGA.
2020,
Pubmed Wang,
Molecular analysis of PRC2 recruitment to DNA in chromatin and its inhibition by RNA.
2017,
Pubmed Whitcomb,
Histone monoubiquitylation position determines specificity and direction of enzymatic cross-talk with histone methyltransferases Dot1L and PRC2.
2012,
Pubmed
,
Xenbase Worden,
Structural basis for COMPASS recognition of an H2B-ubiquitinated nucleosome.
2020,
Pubmed Yuan,
H3K36 methylation antagonizes PRC2-mediated H3K27 methylation.
2011,
Pubmed Zhang,
RNA exploits an exposed regulatory site to inhibit the enzymatic activity of PRC2.
2019,
Pubmed Zhang,
Gctf: Real-time CTF determination and correction.
2016,
Pubmed Zheng,
MotionCor2: anisotropic correction of beam-induced motion for improved cryo-electron microscopy.
2017,
Pubmed