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   Cdk1 targets Srs2 to complete synthesis-dependent strand annealing and to promote recombinational repair  
   
نویسنده saponaro m. ,callahan d. ,zheng x. ,krejci l. ,haber j.e. ,klein h.l. ,liberi g.
منبع plos genetics - 2010 - دوره : 6 - شماره : 2
چکیده    Cdk1 kinase phosphorylates budding yeast srs2,a member of uvrd protein family,displays both dna translocation and dna unwinding activities in vitro. srs2 prevents homologous recombination by dismantling rad51 filaments and is also required for double-strand break (dsb) repair. here we examine the biological significance of cdk1-dependent phosphorylation of srs2,using mutants that constitutively express the phosphorylated or unphosphorylated protein isoforms. we found that cdk1 targets srs2 to repair dsb and,in particular,to complete synthesis-dependent strand annealing,likely controlling the disassembly of a d-loop intermediate. cdk1-dependent phosphorylation controls turnover of srs2 at the invading strand; and,in absence of this modification,the turnover of rad51 is not affected. further analysis of the recombination phenotypes of the srs2 phospho-mutants showed that srs2 phosphorylation is not required for the removal of toxic rad51 nucleofilaments,although it is essential for cell survival,when dna breaks are channeled into homologous recombinational repair. cdk1-targeted srs2 displays a pcna-independent role and appears to have an attenuated ability to inhibit recombination. finally,the recombination defects of unphosphorylatable srs2 are primarily due to unscheduled accumulation of the srs2 protein in a sumoylated form. thus,the srs2 anti-recombination function in removing toxic rad51 filaments is genetically separable from its role in promoting recombinational repair,which depends exclusively on cdk1-dependent phosphorylation. we suggest that cdk1 kinase counteracts unscheduled sumoylation of srs2 and targets srs2 to dismantle specific dna structures,such as the d-loops,in a helicase-dependent manner during homologous recombinational repair. © 2010 saponaro et al.
آدرس institute of molecular oncology foundation,italian foundation for cancer research,dipartimento di science biomolecolari e biotecnologie-university of milan,milan,italy,london research institute,clare hall laboratories,south mimms, United Kingdom, department of biochemistry,kaplan cancer center,new york university school of medicine,new york,ny,united states,college of physicians and surgeons,columbia university,new york,ny, United States, department of biochemistry,kaplan cancer center,new york university school of medicine,new york,ny, United States, department of biology,national center for biomolecular research,masaryk university,brno, Czech Republic, department of biology,rosenstiel medical center,brandeis university,waltham,ma, United States, department of biochemistry,kaplan cancer center,new york university school of medicine,new york,ny, United States, institute of molecular oncology foundation,italian foundation for cancer research,dipartimento di science biomolecolari e biotecnologie-university of milan,milan, Italy
 
     
   
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