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DNAJC9 integrates heat shock molecular chaperones into the histone chaperone network

Mol Cell. 2021-04; 
Colin M Hammond, Hongyu Bao, Ivo A Hendriks, Massimo Carraro, Alberto García-Nieto, Yanhong Liu, Nazaret Reverón-Gómez, Christos Spanos, Liu Chen, Juri Rappsilber, Michael L Nielsen, Dinshaw J Patel, Hongda Huang, Anja Groth
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Gene Synthesis DNAJC9 siRNA resistance cassettes designed against Silencer Select siRNAs (s23352, s23353, s23354, Thermo Scientific) were synthesized (by Genscript) Get A Quote

摘要

From biosynthesis to assembly into nucleosomes, histones are handed through a cascade of histone chaperones, which shield histones from non-specific interactions. Whether mechanisms exist to safeguard the histone fold during histone chaperone handover events or to release trapped intermediates is unclear. Using structure-guided and functional proteomics, we identify and characterize a histone chaperone function of DNAJC9, a heat shock co-chaperone that promotes HSP70-mediated catalysis. We elucidate the structure of DNAJC9, in a histone H3-H4 co-chaperone complex with MCM2, revealing how this dual histone and heat shock co-chaperone binds histone substrates. We show that DNAJC9 recruits HSP70-type enzymes via i... More

关键词

DNAJC9, HSP40, HSP70, MCM2, TONSL, chromatin replication, heat shock co-chaperone, histone chaperone, nucleosome assembly, transcription