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Redβ 的 DNA 退火对于同源重组来说是不够的,额外的要求涉及分子内和分子间的相互作用。

DNA annealing by Redβ is insufficient for homologous recombination and the additional requirements involve intra- and inter-molecular interactions.

机构信息

Genomics, Biotechnology Center, TU Dresden, Tatzberg 47/49, 01307 Dresden, Germany.

Shandong University-Helmholtz Joint Institute of Biotechnology, State Key Laboratory of Microbial Technology, Shandong University, Shanda Nanlu 27, 250100 Jinan, People's Republic of China.

出版信息

Sci Rep. 2016 Oct 6;6:34525. doi: 10.1038/srep34525.

Abstract

Single strand annealing proteins (SSAPs) like Redβ initiate homologous recombination by annealing complementary DNA strands. We show that C-terminally truncated Redβ, whilst still able to promote annealing and nucleoprotein filament formation, is unable to mediate homologous recombination. Mutations of the C-terminal domain were evaluated using both single- and double stranded (ss and ds) substrates in recombination assays. Mutations of critical amino acids affected either dsDNA recombination or both ssDNA and dsDNA recombination indicating two separable functions, one of which is critical for dsDNA recombination and the second for recombination per se. As evaluated by co-immunoprecipitation experiments, the dsDNA recombination function relates to the Redα-Redβ protein-protein interaction, which requires not only contacts in the C-terminal domain but also a region near the N-terminus. Because the nucleoprotein filament formed with C-terminally truncated Redβ has altered properties, the second C-terminal function could be due to an interaction required for functional filaments. Alternatively the second C-terminal function could indicate a requirement for a Redβ-host factor interaction. These data further advance the model for Red recombination and the proposition that Redβ and RAD52 SSAPs share ancestral and mechanistic roots.

摘要

单链退火蛋白(SSAPs)如 Redβ 通过退火互补 DNA 链来启动同源重组。我们表明,虽然 C 端截断的 Redβ 仍然能够促进退火和核蛋白丝形成,但不能介导同源重组。使用重组测定中的单链和双链(ss 和 ds)底物评估 C 末端结构域的突变。关键氨基酸的突变影响 dsDNA 重组或 ssDNA 和 dsDNA 重组两者,表明有两个可分离的功能,其中一个对于 dsDNA 重组至关重要,第二个对于重组本身至关重要。如共免疫沉淀实验评估所示,dsDNA 重组功能与 Redα-Redβ 蛋白-蛋白相互作用有关,这不仅需要 C 末端结构域的接触,还需要接近 N 末端的区域。由于与 C 端截断的 Redβ 形成的核蛋白丝具有改变的性质,第二个 C 末端功能可能是由于功能丝所需的相互作用。或者,第二个 C 末端功能可能表明需要 Redβ-宿主因子相互作用。这些数据进一步推进了 Red 重组模型和 Redβ 和 RAD52 SSAPs 共享祖先和机制根源的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ace6/5052646/77cda0eed384/srep34525-f1.jpg

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