Department of Physics and Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.
Nucleic Acids Res. 2014 Jan;42(1):526-33. doi: 10.1093/nar/gkt867. Epub 2013 Sep 30.
RecA and Rad51 proteins play an important role in DNA repair and homologous recombination. For RecA, X-ray structure information and single molecule force experiments have indicated that the differential extension between the complementary strand and its Watson-Crick pairing partners promotes the rapid unbinding of non-homologous dsDNA and drives strand exchange forward for homologous dsDNA. In this work we find that both effects are also present in Rad51 protein. In particular, pulling on the opposite termini (3' and 5') of one of the two DNA strands in a dsDNA molecule allows dsDNA to extend along non-homologous Rad51-ssDNA filaments and remain stably bound in the extended state, but pulling on the 3'5' ends of the complementary strand reduces the strand-exchange rate for homologous filaments. Thus, the results suggest that differential extension is also present in dsDNA bound to Rad51. The differential extension promotes rapid recognition by driving the swift unbinding of dsDNA from non-homologous Rad51-ssDNA filaments, while at the same time, reducing base pair tension due to the transfer of the Watson-Crick pairing of the complementary strand bases from the highly extended outgoing strand to the slightly less extended incoming strand, which drives strand exchange forward.
RecA 和 Rad51 蛋白在 DNA 修复和同源重组中发挥重要作用。对于 RecA,X 射线结构信息和单分子力实验表明,互补链与其 Watson-Crick 配对伙伴之间的差异延伸促进了非同源双链 DNA 的快速解链,并推动同源双链 DNA 的链交换向前进行。在这项工作中,我们发现 Rad51 蛋白也存在这两种效应。特别是,在双链 DNA 分子中一条 DNA 链的相反末端(3'和 5')上拉动可以允许双链 DNA 沿着非同源 Rad51-ssDNA 细丝延伸,并在延伸状态下保持稳定结合,但拉动互补链的 3'5'末端会降低同源细丝的链交换速率。因此,这些结果表明差异延伸也存在于与 Rad51 结合的双链 DNA 中。差异延伸通过驱动双链 DNA 从非同源 Rad51-ssDNA 细丝中迅速解链来促进快速识别,同时,由于互补链碱基的 Watson-Crick 配对从高度延伸的外出链转移到稍微不那么延伸的进入链,从而减少碱基对张力,这推动了链交换向前进行。