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Multifunctional roles of Saccharomyces cerevisiae Srs2 protein in replication recombination and repair

机译:酿酒酵母Srs2蛋白在复制重组和修复中的多功能作用

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摘要

The Saccharomyces cerevisiae Srs2 DNA helicase has important roles in DNA replication, recombination and repair. In replication, Srs2 aids in repair of gaps by repair synthesis by preventing gaps from being used to initiate recombination. This is considered to be an anti-recombination role. In recombination, Srs2 plays both prorecombination and anti-recombination roles to promote the synthesis-dependent strand annealing recombination pathway and to inhibit gaps from initiating homologous recombination. In repair, the Srs2 helicase actively promotes gap repair through an interaction with the Exo1 nuclease to enlarge a gap for repair and to prevent Rad51 protein from accumulating on single-stranded DNA. Finally, Srs2 helicase can unwind hairpin-forming repeat sequences to promote replication and prevent repeat instability. The Srs2 activities can be controlled by phosphorylation, SUMO modification and interaction with key partners at DNA damage or lesions sites, which include PCNA and Rad51. These interactions can also limit DNA polymerase function during recombinational repair independent of the Srs2 translocase or helicase activity, further highlighting the importance of the Srs2 protein in regulating recombination. Here we review the myriad roles of Srs2 that have been documented in genome maintenance and distinguish between the translocase, helicase and additional functions of the Srs2 protein.
机译:酿酒酵母Srs2 DNA解旋酶在DNA复制,重组和修复中具有重要作用。在复制中,Srs2通过防止缺口被用于引发重组来通过修复合成来帮助缺口的修复。这被认为是抗重组的作用。在重组中,Srs2同时发挥重组和抗重组的作用,以促进依赖于合成的链退火重组途径并抑制空位启动同源重组。在修复中,Srs2解旋酶通过与Exo1核酸酶的相互作用来积极促进缺口修复,从而扩大缺口以进行修复并防止Rad51蛋白积聚在单链DNA上。最后,Srs2解旋酶可以解开形成发夹的重复序列,以促进复制并防止重复不稳定。 Srs2活性可以通过磷酸化,SUMO修饰以及与DNA损伤或病变部位(包括PCNA和Rad51)的关键伴侣的相互作用来控制。这些相互作用还可以在重组修复过程中限制DNA聚合酶的功能,而与Srs2转移酶或解旋酶活性无关,这进一步凸显了Srs2蛋白在调节重组中的重要性。在这里,我们回顾了Srs2在基因组维护中的多种作用,并区分了转酶,解旋酶和Srs2蛋白的其他功能。

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