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XB-ART-55042
Cell Rep 2018 Jun 19;2312:3419-3428. doi: 10.1016/j.celrep.2018.05.061.
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Replication Fork Reversal during DNA Interstrand Crosslink Repair Requires CMG Unloading.

Amunugama R , Willcox S , Wu RA , Abdullah UB , El-Sagheer AH , Brown T , McHugh PJ , Griffith JD , Walter JC .


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DNA interstrand crosslinks (ICLs) are extremely cytotoxic, but the mechanism of their repair remains incompletely understood. Using Xenopus egg extracts, we previously showed that repair of a cisplatin ICL is triggered when two replication forks converge on the lesion. After CDC45/MCM2-7/GINS (CMG) ubiquitylation and unloading by the p97 segregase, FANCI-FANCD2 promotes DNA incisions by XPF-ERCC1, leading to ICL unhooking. Here, we report that, during this cell-free ICL repair reaction, one of the two converged forks undergoes reversal. Fork reversal fails when CMG unloading is inhibited, but it does not require FANCI-FANCD2. After one fork has undergone reversal, the opposing fork that still abuts the ICL undergoes incisions. Our data show that replication fork reversal at an ICL requires replisome disassembly. We present a revised model of ICL repair that involves a reversed fork intermediate.

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Species referenced: Xenopus laevis
Genes referenced: cdc45 eif4g2 ercc1 ercc4 fancd2 fanci gins1 mcm2 mcm3 mcm4 mcm5 mcm6.2 mcm7 nms rpa1 slx4
GO keywords: DNA repair [+]

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References [+] :
Abdullah, RPA activates the XPF-ERCC1 endonuclease to initiate processing of DNA interstrand crosslinks. 2017, Pubmed