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Smarcal1-Mediated Fork Reversal Triggers Mre11-Dependent Degradation of Nascent DNA in the Absence of Brca2 and Stable Rad51 Nucleofilaments.

Mol. Cell. 2017; 
KolinjivadiArun Mouli,SanninoVincenzo,De AntoniAnna,ZadorozhnyKarina,KilkennyMairi,TécherHervé,BaldiGiorgio,ShenRong,CicciaAlberto,PellegriniLuca,KrejciLumir,CostanzoVinc
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PCR Cloning and Subcloning The cDNA encoding for Xenopus laevis Smarcal1 (GenBank: NM_001096199) cloned into pFastbac-HTb, was obtained from GenScript. Get A Quote

摘要

Brca2 deficiency causes Mre11-dependent degradation of nascent DNA at stalled forks, leading to cell lethality. To understand the molecular mechanisms underlying this process, we isolated Xenopus laevis Brca2. We demonstrated that Brca2 protein prevents single-stranded DNA gap accumulation at replication fork junctions and behind them by promoting Rad51 binding to replicating DNA. Without Brca2, forks with persistent gaps are converted by Smarcal1 into reversed forks, triggering extensive Mre11-dependent nascent DNA degradation. Stable Rad51 nucleofilaments, but not RPA or Rad51 mutant proteins, directly prevent Mre11-dependent DNA degradation. Mre11 inhibition instead promotes reversed fork accumul... More

关键词

Brca2,DNA replication,Mre11,Rad51,Xenopus laevis,fork protec