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酵母中rad50 ATP结合结构域氨基酸取代对DNA双链断裂修复的影响。

Effect of amino acid substitutions in the rad50 ATP binding domain on DNA double strand break repair in yeast.

作者信息

Chen Ling, Trujillo Kelly M, Van Komen Stephen, Roh Dong Hyun, Krejci Lumir, Lewis L Kevin, Resnick Michael A, Sung Patrick, Tomkinson Alan E

机构信息

Department of Molecular Medicine, Institute of Biotechnology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas 78245, USA.

出版信息

J Biol Chem. 2005 Jan 28;280(4):2620-7. doi: 10.1074/jbc.M410192200. Epub 2004 Nov 16.

Abstract

The Saccharomyces cerevisiae Rad50-Mre11-Xrs2 complex plays a central role in the cellular response to DNA double strand breaks. Rad50 has a globular ATPase head domain with a long coiled-coil tail. DNA binding by Rad50 is ATP-dependent and the Rad50-Mre11-Xrs2 complex possesses DNA unwinding and endonuclease activities that are regulated by ATP. Here we have examined the role of the Rad50 Walker type A ATP binding motif in DNA double strand break repair by a combination of genetic and biochemical approaches. Replacement of the conserved lysine residue within the Walker A motif with alanine, glutamate, or arginine results in the same DNA damage sensitivity and homologous recombination defect as the rad50 deletion mutation. The Walker A mutations also cause a deficiency in non-homologous end-joining. As expected, complexes containing the rad50 Walker A mutant proteins are defective in ATPase, ATP-dependent DNA unwinding, and ATP-stimulated endonuclease activities. Although the DNA end-bridging activity of the Rad50-Mre11-Xrs2 complex is ATP-independent, the end-bridging activity of complexes containing the rad50 Walker A mutant proteins is salt-sensitive. These results provide a molecular explanation for the observed in vivo defects of the rad50 Walker mutant strains and reveal a novel ATP-independent function for Rad50 in DNA end-bridging.

摘要

酿酒酵母Rad50-Mre11-Xrs2复合物在细胞对DNA双链断裂的反应中起核心作用。Rad50有一个带有长卷曲螺旋尾巴的球状ATP酶头部结构域。Rad50与DNA的结合是ATP依赖的,并且Rad50-Mre11-Xrs2复合物具有由ATP调节的DNA解旋和核酸内切酶活性。在这里,我们通过遗传和生化方法相结合,研究了Rad50沃克A型ATP结合基序在DNA双链断裂修复中的作用。用丙氨酸、谷氨酸或精氨酸取代沃克A基序内保守的赖氨酸残基,会导致与rad50缺失突变相同的DNA损伤敏感性和同源重组缺陷。沃克A突变也会导致非同源末端连接缺陷。正如预期的那样,含有rad50沃克A突变蛋白的复合物在ATP酶、ATP依赖的DNA解旋和ATP刺激的核酸内切酶活性方面存在缺陷。虽然Rad50-Mre11-Xrs2复合物的DNA末端桥接活性是ATP非依赖的,但含有rad50沃克A突变蛋白的复合物的末端桥接活性对盐敏感。这些结果为观察到的rad50沃克突变株的体内缺陷提供了分子解释,并揭示了Rad50在DNA末端桥接中一种新的ATP非依赖功能。

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