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酵母REV1蛋白的脱氧胞苷转移酶活性。

Deoxycytidyl transferase activity of yeast REV1 protein.

作者信息

Nelson J R, Lawrence C W, Hinkle D C

机构信息

Department of Biophysics, University of Rochester, New York 14642-8408, USA.

出版信息

Nature. 1996 Aug 22;382(6593):729-31. doi: 10.1038/382729a0.

Abstract

Mutagenesis induced by DNA damage in Saccharomyces cerevisiae requires the products of the REV1, REV3 and REV7 genes. The Rev3 and Rev7 proteins are subunits of DNA polymerase-zeta (Pol-zeta), an enzyme whose sole function appears to be translesion synthesis. Rev1 protein has weak homology with UmuC protein which facilitates translesion synthesis in Escherichia coli by an unknown mechanism. We show here that Rev1 protein has a deoxycytidyl transferase activity which transfers a dCMP residue from dCTP to the 3' end of a DNA primer in a template-dependent reaction. Efficient transfer occurred opposite a template abasic site, but approximately 20% transfer also occurred opposite a template guanine and approximately 10% opposite adenine or uracil; < or = 1% was seen opposite thymine or cytosine. Insertion of cytosine opposite an abasic site produced a terminus that was extended efficiently by Pol-zeta, but not by yeast Pol-alpha.

摘要

酿酒酵母中由DNA损伤诱导的诱变作用需要REV1、REV3和REV7基因的产物。Rev3和Rev7蛋白是DNA聚合酶ζ(Pol-ζ)的亚基,该酶的唯一功能似乎是跨损伤合成。Rev1蛋白与UmuC蛋白具有微弱的同源性,UmuC蛋白通过未知机制促进大肠杆菌中的跨损伤合成。我们在此表明,Rev1蛋白具有脱氧胞苷转移酶活性,该活性在模板依赖性反应中将dCMP残基从dCTP转移到DNA引物的3'末端。在模板无碱基位点对面发生高效转移,但在模板鸟嘌呤对面也发生约20%的转移,在腺嘌呤或尿嘧啶对面约为10%;在胸腺嘧啶或胞嘧啶对面观察到的转移<或 = 1%。在无碱基位点对面插入胞嘧啶产生了一个末端,该末端可被Pol-ζ有效延伸,但不能被酵母Pol-α延伸。

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