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酵母DNA修复和重组蛋白Rad1和Rad10构成一种单链DNA内切核酸酶。

Yeast DNA repair and recombination proteins Rad1 and Rad10 constitute a single-stranded-DNA endonuclease.

作者信息

Tomkinson A E, Bardwell A J, Bardwell L, Tappe N J, Friedberg E C

机构信息

Department of Pathology, University of Texas Southwestern Medical Center, Dallas 75235-9072.

出版信息

Nature. 1993 Apr 29;362(6423):860-2. doi: 10.1038/362860a0.

Abstract

Damage-specific recognition and incision of DNA during nucleotide excision repair in yeast and mammalian cells requires multiple gene products. Amino-acid sequence homology between several yeast and mammalian genes suggests that the mechanism of nucleotide excision repair is conserved in eukaryotes, but very little is known about its biochemistry. In the yeast Saccharomyces cerevisiae at least 6 genes are needed for this process, including RAD1 and RAD10 (ref. 1). Mutations in the two genes inactivate nucleotide excision repair and result in a reduced efficiency of mitotic recombinational events between repeated sequences. The Rad10 protein has a stable and specific interaction with Rad1 protein and also binds to single-stranded DNA and promotes annealing of homologous single-stranded DNA. The amino-acid sequence of the yeast Rad10 protein is homologous with that of the human excision repair gene ERCC1 (ref. 3). Here we demonstrate that a complex of purified Rad1 and Rad10 proteins specifically degrades single-stranded DNA by an endonucleolytic mechanism. This endonuclease activity is presumably required to remove non-homologous regions of single-stranded DNA during mitotic recombination between repeated sequences as previously suggested, and may also be responsible for the specific incision of damaged DNA during nucleotide excision repair.

摘要

在酵母和哺乳动物细胞的核苷酸切除修复过程中,对DNA损伤的特异性识别和切割需要多种基因产物。几种酵母和哺乳动物基因之间的氨基酸序列同源性表明,核苷酸切除修复机制在真核生物中是保守的,但对其生物化学过程却知之甚少。在酿酒酵母中,这一过程至少需要6个基因,包括RAD1和RAD10(参考文献1)。这两个基因的突变会使核苷酸切除修复失活,并导致重复序列之间有丝分裂重组事件的效率降低。Rad10蛋白与Rad1蛋白有稳定且特异的相互作用,还能结合单链DNA并促进同源单链DNA的退火。酵母Rad10蛋白的氨基酸序列与人类切除修复基因ERCC1的序列同源(参考文献3)。在此我们证明,纯化的Rad1和Rad10蛋白复合物通过核酸内切机制特异性降解单链DNA。如之前所提出的,这种核酸内切酶活性可能是在重复序列之间的有丝分裂重组过程中去除单链DNA非同源区域所必需的,也可能是核苷酸切除修复过程中对损伤DNA进行特异性切割的原因。

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