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Rad51 paralogues Rad55-Rad57 balance the antirecombinase Srs2 in Rad51 filament formation

机译:Rad51旁系同源物Rad55-Rad57平衡Rad51细丝形成中的抗重组酶Srs2

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摘要

Homologous recombination is a high-fidelity DNA repair pathway. Besides a critical role in accurate chromosome segregation during meiosis, recombination functions in DNA repair and in the recovery of stalled or broken replication forks to ensure genomic stability. In contrast, inappropriate recombination contributes to genomic instability, leading to loss of heterozygosity, chromosome rearrangements and cell death. The RecA/UvsX/RadA/Rad51 family of proteins catalyses the signature reactions of recombination, homo-logy search and DNA strand invasion1'2. Eukaryotes also possess Rad51 paralogues, whose exact role in recombination remains to be defined3. Here we show that the Saccharomyces cerevisiae RadSl paralogues, the Rad55-Rad57 heterodimer, counteract the antirecombination activity of the Srs2 helicase. The Rad55-Rad57 heterodimer associates with the Rad51-single-stranded DNA filament, rendering it more stable than a nudeoprotein filament containing Rad51 alone. The Rad51-Rad55-Rad57 co-filament resists disruption by the Srs2 antirecombinase by blocking Srs2 transloca-tion, involving a direct protein interaction between Rad55-Rad57 and Srs2. Our results demonstrate an unexpected role of the Rad51 paralogues in stabilizing the Rad51 filament against a biologically important antagonist, the Srs2 antirecombination helicase. The biological significance of this mechanism is indicated by a complete suppression of the ionizing radiation sensitivity of rad55 or rad57 mutants by concomitant deletion of SRS2, as expected for biological antagonists. We propose that the Rad51 presynaptic filament is a meta-stable reversible intermediate, whose assembly and disassembly is governed by the balance between Rad55-Rad57 and Srs2, providing a key regulatory mechanism controlling the initiation of homologous recombination. These data provide a paradigm for the potential function of the human RAD51 paralogues, which are known to be involved in cancer predisposition and human disease.
机译:同源重组是高保真DNA修复途径。除了在减数分裂过程中准确分离染色体中起关键作用外,重组还可以在DNA修复以及停滞或断裂的复制叉的恢复中发挥功能,以确保基因组稳定性。相反,不适当的重组会导致基因组不稳定,导致杂合性丧失,染色体重排和细胞死亡。 RecA / UvsX / RadA / Rad51家族的蛋白质催化重组,同源搜索和DNA链入侵的标志性反应1'2。真核生物还具有Rad51旁系同源物,其在重组中的确切作用尚待确定3。在这里,我们显示啤酒酵母RadS1旁系同源物Rad55-Rad57异二聚体抵消了Srs2解旋酶的抗重组活性。 Rad55-Rad57异二聚体与Rad51单链DNA细丝缔合,使其比仅包含Rad51的裸蛋白细丝更稳定。 Rad51-Rad55-Rad57共丝通过阻断Srs2易位而抵抗Srs2抗重组酶的破坏,这涉及Rad55-Rad57和Srs2之间的直接蛋白质相互作用。我们的结果表明,Rad51旁系同源物在稳定Rad51细丝抵抗生物学上重要的拮抗剂Srs2抗重组解旋酶方面具有出乎意料的作用。该机制的生物学意义是通过同时缺失SRS2来完全抑制rad55或rad57突变体的电离辐射敏感性所表明的,这是对生物拮抗剂的预期。我们建议Rad51突触前丝是一种亚稳定的可逆中间体,其组装和拆卸受Rad55-Rad57和Srs2之间的平衡支配,提供了控制同源重组起始的关键调控机制。这些数据为人类RAD51旁系同源物的潜在功能提供了范式,已知其与癌症易感性和人类疾病有关。

著录项

  • 来源
    《Nature》 |2011年第7372期|p.245-248|共4页
  • 作者单位

    Department of Microbiology, University of California, Davis, Davis, California 95616-8665,USA;

    Department of Molecular & Cellular Biology, University of California, Davis, Davis, California 95616-8665,USA;

    CEA-DSV-lnstitut de Radiobiologie Cellulaire et Moleculaire, UMR217 CNRS/CEA, F-92265 Fontenay aux Roses, France;

    CEA-DSV-lnstitut de Radiobiologie Cellulaire et Moleculaire, UMR217 CNRS/CEA, F-92265 Fontenay aux Roses, France;

    Department of Molecular & Cellular Biology, University of California, Davis, Davis, California 95616-8665,USA,Center for Cellular Imaging and Nanoanalytics, University Basel, CH-4056 Basel, Switzerland;

    Department of Microbiology, University of California, Davis, Davis, California 95616-8665,USA,Department of Molecular & Cellular Biology, University of California, Davis, Davis, California 95616-8665,USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:54:51

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