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Rad54蛋白对部分或完全被Rad51蛋白覆盖的双链DNA发挥多种ATP酶活性模式。

Rad54 protein exerts diverse modes of ATPase activity on duplex DNA partially and fully covered with Rad51 protein.

作者信息

Kiianitsa Konstantin, Solinger Jachen A, Heyer Wolf-Dietrich

机构信息

Division of Biological Sciences, Section of Microbiology, Center for Genetics and Development, University of California, Davis, California 95616-8665, USA.

出版信息

J Biol Chem. 2002 Nov 29;277(48):46205-15. doi: 10.1074/jbc.M207967200. Epub 2002 Sep 30.

Abstract

Rad54 protein is a Snf2-like ATPase with a specialized function in the recombinational repair of DNA damage. Rad54 is thought to stimulate the search of homology via formation of a specific complex with the presynaptic Rad51 filament on single-stranded DNA. Herein, we address the interaction of Rad54 with Rad51 filaments on double-stranded (ds) DNA, an intermediate in DNA strand exchange with unclear functional significance. We show that Saccharomyces cerevisiae Rad54 exerts distinct modes of ATPase activity on partially and fully saturated filaments of Rad51 protein on dsDNA. The highest ATPase activity is observed on dsDNA containing short patches of yeast Rad51 filaments resulting in a 6-fold increase compared with protein-free DNA. This enhanced ATPase mode of yeast Rad54 can also be elicited by partial filaments of human Rad51 protein but to a lesser extent. In contrast, the interaction of Rad54 protein with duplex DNA fully covered with Rad51 is entirely species-specific. When yeast Rad51 fully covers dsDNA, Rad54 protein hydrolyzes ATP in a reduced mode at 60-80% of its rate on protein-free DNA. Instead, saturated filaments with human Rad51 fail to support the yeast Rad54 ATPase. We suggest that the interaction of Rad54 with dsDNA-Rad51 complexes is of functional importance in homologous recombination.

摘要

Rad54蛋白是一种Snf2样ATP酶,在DNA损伤的重组修复中具有特殊功能。Rad54被认为通过与单链DNA上的突触前Rad51细丝形成特定复合物来刺激同源性搜索。在此,我们研究了Rad54与双链(ds)DNA上的Rad51细丝的相互作用,这是DNA链交换中的一个中间体,其功能意义尚不清楚。我们发现酿酒酵母Rad54对dsDNA上部分饱和和完全饱和的Rad51蛋白细丝具有不同的ATP酶活性模式。在含有酵母Rad51细丝短片段的dsDNA上观察到最高的ATP酶活性,与无蛋白DNA相比增加了6倍。酵母Rad54的这种增强的ATP酶模式也可以由人Rad51蛋白的部分细丝引发,但程度较小。相反,Rad54蛋白与完全被Rad51覆盖的双链DNA的相互作用完全是物种特异性的。当酵母Rad51完全覆盖dsDNA时,Rad54蛋白以降低的模式水解ATP,其速率为无蛋白DNA上的60-80%。相反,用人Rad51饱和的细丝不能支持酵母Rad54 ATP酶。我们认为Rad54与dsDNA-Rad51复合物的相互作用在同源重组中具有重要的功能。

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