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首页> 外文期刊>BMC Molecular Biology >The Mre11 protein interacts with both Rad50 and the HerA bipolar helicase and is recruited to DNA following gamma irradiation in the archaeon Sulfolobus acidocaldarius
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The Mre11 protein interacts with both Rad50 and the HerA bipolar helicase and is recruited to DNA following gamma irradiation in the archaeon Sulfolobus acidocaldarius

机译:Mre11蛋白与Rad50和HerA双极解旋酶都相互作用,并在古细菌Sulfolobus acidocaldarius中被伽马射线照射后募集到DNA中。

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Background:The ubiquitous Rad50 and Mre11 proteins play a key role in many processes involved in the maintenance of genome integrity in Bacteria and Eucarya,but their function in the Archaea is presently unknown.We showed previously that in most hyperthermophilic archaea, rad50-mre11 genes are linked to nurA encoding both a single-strand endonuclease and a 5'to 3' exonuclease,and herA,encoding a bipolar DNA helicase which suggests the involvement of the four proteins in common molecular pathway(s).Since genetic tools for hyperthermophilic archaea are just emerging,we utilized immuno-detection approaches to get the first in vivo data on the role(s) of these proteins in the hyperthermophilic crenarchaeon Sulfolobus acidocaldarius. Results:We first showed that S.acidocaldarius can repair DNA damage induced by high doses of gamma rays,and we performed a time course analysis of the total levels and sub-cellular partitioning of Rad50,Mre11,HerA and NurA along with the RadA recombinase in both control and irradiated cells.We found that during the exponential phase,all proteins are synthesized and display constant levels,but that all of them exhibit a different sub-cellular partitioning.Following gamma irradiation,both Mre11 and RadA are immediately recruited to DNA and remain DNA- bound in the course of DNA repair.Furthermore,we show by immuno-precipitation assays that Rad50,Mre11 and the HerA helicase interact altogether. Conclusion:Our analyses strongly support that in Sulfolobus acidocaldarius,the Mre11 protein and the RadA recombinase might play an active role in the repair of DNA damage introduced by gamma rays and/or may act as DNA damage sensors.Moreover,our results demonstrate the functional interaction between Mre11,Rad50 and the HerA helicase and suggest that each protein play different roles when acting on its own or in association with its partners.This report provides the first in vivo evidence supporting the implication of the Mre11 protein in DNA repair processes in the Archaea and showing its interaction with both Rad50 and the HerA bipolar helicase.Further studies on the functional interactions between these proteins,the NurA nuclease and the RadA recombinase,will allow us to define their roles and mechanism of action.
机译:背景:无处不在的Rad50和Mre11蛋白在细菌和真核生物的基因组完整性维持过程中起着关键作用,但它们在古细菌中的功能目前尚不清楚。我们之前曾证明在大多数超嗜热古细菌中,rad50-mre11基因与编码单链核酸内切酶和5'至3'核酸外切酶的nurA以及与herA编码的双极DNA解旋酶相连,这暗示了这四种蛋白参与了常见的分子途径。刚刚出现,我们利用免疫检测方法获得了有关这些蛋白质在嗜热性克氏杆菌硫代嗜酸菌中的作用的第一个体内数据。结果:我们首先表明嗜酸链球菌可以修复高剂量伽马射线诱导的DNA损伤,并对Rad50,Mre11,HerA和NurA的总水平和亚细胞分配以及RadA重组酶进行了时程分析我们发现,在指数期,所有蛋白质都合成并显示恒定水平,但是它们都表现出不同的亚细胞分配。在伽马射线照射之后,Mre11和RadA都立即被募集到DNA中。此外,我们通过免疫沉淀分析表明Rad50,Mre11和HerA解旋酶完全相互作用。结论:我们的分析有力地证明,在嗜盐球菌中,Mre11蛋白和RadA重组酶可能在修复由伽马射线引起的DNA损伤中起着积极的作用,并且/或者可以充当DNA损伤的传感器。 Mre11,Rad50和HerA解旋酶之间的相互作用,并暗示每种蛋白质在单独发挥作用或与伴侣结合时起着不同的作用。本报告提供了第一个体内证据,证明Mre11蛋白在DNA修复过程中的意义。古细菌,并显示其与Rad50和HerA双极解旋酶的相互作用。对这些蛋白,NurA核酸酶和RadA重组酶之间功能相互作用的进一步研究将使我们能够定义它们的作用和作用机理。

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