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Cmr1/WDR76 defines a nuclear genotoxic stress body linking genome integrity and protein quality control.


ABSTRACT: DNA replication stress is a source of genomic instability. Here we identify changed mutation rate 1 (Cmr1) as a factor involved in the response to DNA replication stress in Saccharomyces cerevisiae and show that Cmr1--together with Mrc1/Claspin, Pph3, the chaperonin containing TCP1 (CCT) and 25 other proteins--define a novel intranuclear quality control compartment (INQ) that sequesters misfolded, ubiquitylated and sumoylated proteins in response to genotoxic stress. The diversity of proteins that localize to INQ indicates that other biological processes such as cell cycle progression, chromatin and mitotic spindle organization may also be regulated through INQ. Similar to Cmr1, its human orthologue WDR76 responds to proteasome inhibition and DNA damage by relocalizing to nuclear foci and physically associating with CCT, suggesting an evolutionarily conserved biological function. We propose that Cmr1/WDR76 plays a role in the recovery from genotoxic stress through regulation of the turnover of sumoylated and phosphorylated proteins.

SUBMITTER: Gallina I 

PROVIDER: S-EPMC4389229 | biostudies-literature | 2015 Mar

REPOSITORIES: biostudies-literature

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Cmr1/WDR76 defines a nuclear genotoxic stress body linking genome integrity and protein quality control.

Gallina Irene I   Colding Camilla C   Henriksen Peter P   Beli Petra P   Nakamura Kyosuke K   Offman Judith J   Mathiasen David P DP   Silva Sonia S   Hoffmann Eva E   Groth Anja A   Choudhary Chunaram C   Lisby Michael M  

Nature communications 20150330


DNA replication stress is a source of genomic instability. Here we identify changed mutation rate 1 (Cmr1) as a factor involved in the response to DNA replication stress in Saccharomyces cerevisiae and show that Cmr1--together with Mrc1/Claspin, Pph3, the chaperonin containing TCP1 (CCT) and 25 other proteins--define a novel intranuclear quality control compartment (INQ) that sequesters misfolded, ubiquitylated and sumoylated proteins in response to genotoxic stress. The diversity of proteins th  ...[more]

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