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RadA和RAD51重组酶中的ATP半位点结合核苷酸。

ATP half-sites in RadA and RAD51 recombinases bind nucleotides.

作者信息

Marsh May E, Scott Duncan E, Ehebauer Matthias T, Abell Chris, Blundell Tom L, Hyvönen Marko

机构信息

Department of Biochemistry University of Cambridge UK; Present address: Paul Scherrer Institut Villingen Switzerland.

Department of Chemistry University of Cambridge UK.

出版信息

FEBS Open Bio. 2016 Apr 6;6(5):372-85. doi: 10.1002/2211-5463.12052. eCollection 2016 May.

Abstract

Homologous recombination is essential for repair of DNA double-strand breaks. Central to this process is a family of recombinases, including archeal RadA and human RAD51, which form nucleoprotein filaments on damaged single-stranded DNA ends and facilitate their ATP-dependent repair. ATP binding and hydrolysis are dependent on the formation of a nucleoprotein filament comprising RadA/RAD51 and single-stranded DNA, with ATP bound between adjacent protomers. We demonstrate that truncated, monomeric Pyrococcus furiosus RadA and monomerised human RAD51 retain the ability to bind ATP and other nucleotides with high affinity. We present crystal structures of both apo and nucleotide-bound forms of monomeric RadA. These structures reveal that while phosphate groups are tightly bound, RadA presents a shallow, poorly defined binding surface for the nitrogenous bases of nucleotides. We suggest that RadA monomers would be constitutively bound to nucleotides in the cell and that the bound nucleotide might play a structural role in filament assembly.

摘要

同源重组对于DNA双链断裂的修复至关重要。这一过程的核心是一个重组酶家族,包括古细菌的RadA和人类的RAD51,它们在受损的单链DNA末端形成核蛋白丝,并促进其ATP依赖的修复。ATP的结合和水解依赖于由RadA/RAD51和单链DNA组成的核蛋白丝的形成,ATP结合在相邻的原体之间。我们证明,截短的单体嗜热栖热菌RadA和单体化的人类RAD51保留了以高亲和力结合ATP和其他核苷酸的能力。我们展示了单体RadA的无核苷酸形式和结合核苷酸形式的晶体结构。这些结构表明,虽然磷酸基团紧密结合,但RadA为核苷酸的含氮碱基提供了一个浅的、定义不明确的结合表面。我们认为,RadA单体在细胞中会持续与核苷酸结合,并且结合的核苷酸可能在丝状体组装中起结构作用。

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