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Physical and functional interplay between PCNA DNA clamp and Mre11–Rad50 complex from the archaeon Pyrococcus furiosus

机译:PCNA DNA钳与古生热球菌Mre11–Rad50复合体之间的物理和功能相互作用

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摘要

Several archaeal species prevalent in extreme environments are particularly exposed to factors likely to cause DNA damages. These include hyperthermophilic archaea (HA), living at temperatures >70°C, which arguably have efficient strategies and robust genome guardians to repair DNA damage threatening their genome integrity. In contrast to Eukarya and other archaea, homologous recombination appears to be a vital pathway in HA, and the Mre11–Rad50 complex exerts a broad influence on the initiation of this DNA damage response process. In a previous study, we identified a physical association between the Proliferating Cell Nuclear Antigen (PCNA) and the Mre11–Rad50 (MR) complex. Here, by performing co-immunoprecipitation and SPR analyses, we identified a short motif in the C- terminal portion of Pyrococcus furiosus Mre11 involved in the interaction with PCNA. Through this work, we revealed a PCNA-interaction motif corresponding to a variation on the PIP motif theme which is conserved among Mre11 sequences of Thermococcale species. Additionally, we demonstrated functional interplay in vitro between P. furiosus PCNA and MR enzymatic functions in the DNA end resection process. At physiological ionic strength, PCNA stimulates MR nuclease activities for DNA end resection and promotes an endonucleolytic incision proximal to the 5′ strand of double strand DNA break.
机译:在极端环境中普遍存在的几种古细菌尤其容易受到可能导致DNA损伤的因素的影响。其中包括生活在> 70°C的高温嗜热古细菌(HA),可以说它具有有效的策略和强大的基因组守护者来修复威胁其基因组完整性的DNA损伤。与Eukarya和其他古细菌相反,同源重组似乎是HA中的重要途径,Mre11–Rad50复合物对这种DNA损伤反应过程的启动具有广泛的影响。在先前的研究中,我们确定了增殖细胞核抗原(PCNA)和Mre11–Rad50(MR)复合物之间的物理联系。在这里,通过进行免疫共沉淀和SPR分析,我们在与PCNA相互作用涉及的激烈热球菌Mre11的C末端部分鉴定了一个短基序。通过这项工作,我们揭示了对应于PIP主题主题变异的PCNA交互基序,该主题在嗜热球菌物种的Mre11序列之间是保守的。此外,我们证明了在体外末端恶性疟原虫PCNA和DNA末端切除过程中MR酶功能之间的功能相互作用。在生理离子强度下,PCNA刺激MR核酸酶活性以进行DNA末端切除,并促进双链DNA断裂5'链附近的内切核酸切割。

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