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通过Nbs1实现沃纳综合征蛋白与Mre11复合物之间的联系。

Linkage between Werner syndrome protein and the Mre11 complex via Nbs1.

作者信息

Cheng Wen-Hsing, von Kobbe Cayetano, Opresko Patricia L, Arthur L Matthew, Komatsu Kenshi, Seidman Michael M, Carney James P, Bohr Vilhelm A

机构信息

Laboratory of Molecular Gerontology, National Institute on Aging, National Institutes of Health, 5600 Nathan Shock Drive, Baltimore, MD 21224, USA.

出版信息

J Biol Chem. 2004 May 14;279(20):21169-76. doi: 10.1074/jbc.M312770200. Epub 2004 Mar 16.

DOI:10.1074/jbc.M312770200
PMID:15026416
Abstract

The Werner syndrome and the Nijmegen breakage syndrome are recessive genetic disorders that show increased genomic instability, cancer predisposition, hypersensitivity to mitomycin C and gamma-irradiation, shortened telomeres, and cell cycle defects. The protein mutated in the premature aging disease known as the Werner syndrome is designated WRN and is a member of the RecQ helicase family. The Nbs1 protein is mutated in Nijmegen breakage syndrome individuals and is part of the mammalian Mre11 complex together with the Mre11 and Rad50 proteins. Here, we show that WRN associates with the Mre11 complex via binding to Nbs1 in vitro and in vivo. In response to gamma-irradiation or mitomycin C, WRN leaves the nucleoli and co-localizes with the Mre11 complex in the nucleoplasm. We detect an increased association between WRN and the Mre11 complex after cellular exposure to gamma-irradiation. Small interfering RNA and complementation experiments demonstrated convergence of WRN and Nbs1 in response to gamma-irradiation or mitomycin C. Nbs1 is required for the Mre11 complex promotion of WRN helicase activity. Taken together, these results demonstrate a functional link between the two genetic diseases with partially overlapping phenotypes in a pathway that responds to DNA double strand breaks and interstrand cross-links.

摘要

沃纳综合征和奈梅亨断裂综合征是隐性遗传疾病,表现为基因组不稳定性增加、癌症易感性、对丝裂霉素C和γ射线超敏、端粒缩短以及细胞周期缺陷。在被称为沃纳综合征的早衰疾病中发生突变的蛋白质被命名为WRN,它是RecQ解旋酶家族的成员。Nbs1蛋白在奈梅亨断裂综合征患者中发生突变,并且与Mre11和Rad50蛋白一起是哺乳动物Mre11复合物的一部分。在这里,我们表明WRN在体外和体内通过与Nbs1结合而与Mre11复合物相关联。响应于γ射线或丝裂霉素C,WRN离开核仁并与核质中的Mre11复合物共定位。我们检测到细胞暴露于γ射线后WRN与Mre11复合物之间的关联增加。小干扰RNA和互补实验表明,响应于γ射线或丝裂霉素C,WRN和Nbs1会趋同。Nbs1是Mre11复合物促进WRN解旋酶活性所必需的。综上所述,这些结果证明了这两种在应对DNA双链断裂和链间交联的途径中具有部分重叠表型的遗传疾病之间的功能联系。

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