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酿酒酵母Mre11/Rad50/Xrs2复合物的特性表明,Rad50负向调节Mre11的内切核酸酶活性,但不调节其外切核酸酶活性。

The characterization of Saccharomyces cerevisiae Mre11/Rad50/Xrs2 complex reveals that Rad50 negatively regulates Mre11 endonucleolytic but not the exonucleolytic activity.

作者信息

Ghosal Gargi, Muniyappa K

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.

Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.

出版信息

J Mol Biol. 2007 Sep 28;372(4):864-882. doi: 10.1016/j.jmb.2007.07.013. Epub 2007 Jul 21.

DOI:10.1016/j.jmb.2007.07.013
PMID:17698079
Abstract

The evolutionarily conserved heterotrimeric Mre11/Rad50/Xrs2 (Nbs1) (MRX/N) complex plays a central role in an array of cellular responses involving DNA damage, telomere length homeostasis, cell-cycle checkpoint control and meiotic recombination. The underlying biochemical functions of MRX/N complex, or each of its individual subunits, at telomeres and the importance of complex formation are poorly understood. Here, we show that the Saccharomyces cerevisiae MRX complex, or its subunits, display an overwhelming preference for G-quadruplex DNA than for telomeric single-stranded or double-stranded DNA implicating the possible existence of this DNA structure in vivo. Although these alternative DNA substrates failed to affect Rad50 ATPase activity, kinetic analyses revealed that interaction of Rad50 with Xrs2 and/or Mre11 led to a twofold increase in the rates of ATP hydrolysis. Significantly, we show that Mre11 displays sequence-specific double-stranded DNA endonuclease activity, and Rad50, but not Xrs2, abrogated endonucleolytic but not the exonucleolytic activity. This repression was alleviated upon ATP hydrolysis by Rad50, suggesting that complex formation between Rad50 and Mre11 might be important for blocking the inappropriate cleavage of genomic DNA. Mre11 alone, or in the presence of ATP, MRX, MR or MX sub-complexes cleaved at the 5' end of an array of G residues in single-stranded DNA, at G quartets in G4 DNA, and at the center of TGTG repeats in duplex DNA. We propose that negative regulation of Mre11 endonuclease activity by Rad50 might be important for native as well as de novo telomere length homeostasis.

摘要

进化上保守的异源三聚体Mre11/Rad50/Xrs2(Nbs1)(MRX/N)复合物在一系列涉及DNA损伤、端粒长度稳态、细胞周期检查点控制和减数分裂重组的细胞反应中起着核心作用。MRX/N复合物或其单个亚基在端粒处的潜在生化功能以及复合物形成的重要性目前尚不清楚。在这里,我们表明酿酒酵母MRX复合物或其亚基对G-四链体DNA的偏好远高于端粒单链或双链DNA,这暗示了这种DNA结构在体内可能存在。尽管这些替代DNA底物未能影响Rad50 ATP酶活性,但动力学分析表明,Rad50与Xrs2和/或Mre11的相互作用导致ATP水解速率增加了两倍。重要的是,我们表明Mre11具有序列特异性双链DNA内切酶活性,而Rad50而非Xrs2消除了内切酶活性但未消除外切酶活性。Rad50水解ATP后这种抑制作用得到缓解,这表明Rad50与Mre11之间的复合物形成可能对阻止基因组DNA的不适当切割很重要。单独的Mre11,或在ATP、MRX、MR或MX亚复合物存在的情况下,会在单链DNA中一系列G残基的5'端、G4 DNA中的G四联体以及双链DNA中TGTG重复序列的中心进行切割。我们提出,Rad50对Mre11内切酶活性的负调控可能对天然以及新生端粒长度稳态很重要。

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