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1.
Mol Plant ; 16(11): 1847-1865, 2023 11 06.
Article de Anglais | MEDLINE | ID: mdl-37822080

RÉSUMÉ

Histone H2A monoubiquitination is associated with transcriptional repression and needs to be removed by deubiquitinases to facilitate gene transcription in eukaryotes. However, the deubiquitinase responsible for genome-wide H2A deubiquitination in plants has yet to be identified. In this study, we found that the previously identified PWWP-EPCR-ARID-TRB (PEAT) complex components interact with both the ubiquitin-specific protease UBP5 and the redundant histone acetyltransferases HAM1 and HAM2 (HAM1/2) to form a larger version of PEAT complex in Arabidopsis thaliana. UBP5 functions as an H2A deubiquitinase in a nucleosome substrate-dependent manner in vitro and mediates H2A deubiquitination at the whole-genome level in vivo. HAM1/2 are shared subunits of the PEAT complex and the conserved NuA4 histone acetyltransferase complex, and are responsible for histone H4K5 acetylation. Within the PEAT complex, the PWWP components (PWWP1, PWWP2, and PWWP3) directly interact with UBP5 and are necessary for UBP5-mediated H2A deubiquitination, while the EPCR components (EPCR1 and EPCR2) directly interact with HAM1/2 and are required for HAM1/2-mediated H4K5 acetylation. Collectively, our study not only identifies dual roles of the PEAT complex in H2A deubiquitination and H4K5 acetylation but also illustrates how these processes collaborate at the whole-genome level to regulate the transcription and development in plants.


Sujet(s)
Arabidopsis , Histone , Histone/métabolisme , Arabidopsis/génétique , Arabidopsis/métabolisme , Récepteur endothélial de la protéine C , Acétylation , Histone acetyltransferases/génétique , Histone acetyltransferases/métabolisme , Enzymes de désubiquitinylation , Sol
2.
Nature ; 616(7955): 176-182, 2023 04.
Article de Anglais | MEDLINE | ID: mdl-36991118

RÉSUMÉ

Repression of gene expression by protein complexes of the Polycomb group is a fundamental mechanism that governs embryonic development and cell-type specification1-3. The Polycomb repressive deubiquitinase (PR-DUB) complex removes the ubiquitin moiety from monoubiquitinated histone H2A K119 (H2AK119ub1) on the nucleosome4, counteracting the ubiquitin E3 ligase activity of Polycomb repressive complex 1 (PRC1)5 to facilitate the correct silencing of genes by Polycomb proteins and safeguard active genes from inadvertent silencing by PRC1 (refs. 6-9). The intricate biological function of PR-DUB requires accurate targeting of H2AK119ub1, but PR-DUB can deubiquitinate monoubiquitinated free histones and peptide substrates indiscriminately; the basis for its exquisite nucleosome-dependent substrate specificity therefore remains unclear. Here we report the cryo-electron microscopy structure of human PR-DUB, composed of BAP1 and ASXL1, in complex with the chromatosome. We find that ASXL1 directs the binding of the positively charged C-terminal extension of BAP1 to nucleosomal DNA and histones H3-H4 near the dyad, an addition to its role in forming the ubiquitin-binding cleft. Furthermore, a conserved loop segment of the catalytic domain of BAP1 is situated near the H2A-H2B acidic patch. This distinct nucleosome-binding mode displaces the C-terminal tail of H2A from the nucleosome surface, and endows PR-DUB with the specificity for H2AK119ub1.


Sujet(s)
Enzymes de désubiquitinylation , Histone , Complexe répresseur Polycomb-1 , Protéines du groupe Polycomb , Humains , Cryomicroscopie électronique , Histone/composition chimique , Histone/métabolisme , Nucléosomes/composition chimique , Nucléosomes/génétique , Nucléosomes/métabolisme , Complexe répresseur Polycomb-1/composition chimique , Complexe répresseur Polycomb-1/métabolisme , Complexe répresseur Polycomb-1/ultrastructure , Protéines du groupe Polycomb/composition chimique , Protéines du groupe Polycomb/métabolisme , Protéines du groupe Polycomb/ultrastructure , Ubiquitine/métabolisme , Ubiquitin thiolesterase/composition chimique , Ubiquitin thiolesterase/métabolisme , Ubiquitin thiolesterase/ultrastructure , Ubiquitination , Protéines de répression/composition chimique , Protéines de répression/métabolisme , Protéines de répression/ultrastructure , Domaine catalytique , Enzymes de désubiquitinylation/classification , Enzymes de désubiquitinylation/métabolisme , Enzymes de désubiquitinylation/ultrastructure , Spécificité du substrat , Ubiquitin-protein ligases/composition chimique , Ubiquitin-protein ligases/métabolisme , Ubiquitin-protein ligases/ultrastructure
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