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Gartner, Anton
DNA Damage Response and Genetic Toxicology
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CUL-2(LRR-1) and UBXN-3 drive replisome disassembly during DNA replication termination and mitosis

Author(s)
Sonneville, RemiMoreno, Sara PriegoKnebel, AxelJohnson, ClareHastie, C. JamesGartner, AntonGambus, AgnieszkaLabib, Karim
Issued Date
2017-04
DOI
10.1038/ncb3500
URI
https://scholarworks.unist.ac.kr/handle/201301/27443
Fulltext
https://www.nature.com/articles/ncb3500
Citation
NATURE CELL BIOLOGY, v.19, no.5, pp.468 - 479
Abstract
Replisome disassembly is the final step of DNA replication in eukaryotes, involving the ubiquitylation and CDC48-dependent dissolution of the CMG helicase (CDC45-MCM-GINS). Using Caenorhabditis elegans early embryos and Xenopus laevis egg extracts, we show that the E3 ligase CUL-2(LRR-1) associates with the replisome and drives ubiquitylation and disassembly of CMG, together with the CDC-48 cofactors UFD-1 and NPL-4. Removal of CMG from chromatin in frog egg extracts requires CUL2 neddylation, and our data identify chromatin recruitment of CUL2(LRR1) as a key regulated step during DNA replication termination. Interestingly, however, CMG persists on chromatin until prophase in worms that lack CUL-2(LRR-1), but is then removed by a mitotic pathway that requires the CDC-48 cofactor UBXN-3, orthologous to the human tumour suppressor FAF1. Partial inactivation of lrr-1 and ubxn-3 leads to synthetic lethality, suggesting future approaches by which a deeper understanding of CMG disassembly in metazoa could be exploited therapeutically.
Publisher
NATURE PUBLISHING GROUP
ISSN
1465-7392
Keyword
XENOPUS EGG EXTRACTSCELL-CYCLE PROGRESSIONCAENORHABDITIS-ELEGANSEUKARYOTIC REPLISOMEC. ELEGANSAAA-ATPASEPROTEIN-DEGRADATIONFORK PROGRESSIONMCM2-7 HELICASEFACTOR-1 FAF1

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