Godin Stephen K, Sullivan Meghan R, Bernstein Kara A
University of Pittsburgh School of Medicine, University of Pittsburgh Cancer Institute, and the Department of Microbiology and Molecular Genetics.
Biochem Cell Biol. 2016 Oct;94(5):407-418. doi: 10.1139/bcb-2016-0012. Epub 2016 Mar 31.
In this review we focus on new insights that challenge our understanding of homologous recombination (HR) and Rad51 regulation. Recent advances using high-resolution microscopy and single molecule techniques have broadened our knowledge of Rad51 filament formation and strand invasion at double-strand break (DSB) sites and at replication forks, which are one of most physiologically relevant forms of HR from yeast to humans. Rad51 filament formation and strand invasion is regulated by many mediator proteins such as the Rad51 paralogues and the Shu complex, consisting of a Shu2/SWS1 family member and additional Rad51 paralogues. Importantly, a novel RAD51 paralogue was discovered in Caenorhabditis elegans, and its in vitro characterization has demonstrated a new function for the worm RAD51 paralogues during HR. Conservation of the human RAD51 paralogues function during HR and repair of replicative damage demonstrate how the RAD51 mediators play a critical role in human health and genomic integrity. Together, these new findings provide a framework for understanding RAD51 and its mediators in DNA repair during multiple cellular contexts.
在本综述中,我们聚焦于那些挑战我们对同源重组(HR)和Rad51调控理解的新见解。利用高分辨率显微镜和单分子技术取得的最新进展,拓宽了我们对Rad51细丝形成以及在双链断裂(DSB)位点和复制叉处链入侵的认识,从酵母到人类,这些都是HR最具生理相关性的形式之一。Rad51细丝形成和链入侵受许多介导蛋白调控,如Rad51旁系同源物和Shu复合体,后者由一个Shu2/SWS1家族成员及其他Rad51旁系同源物组成。重要的是,在秀丽隐杆线虫中发现了一种新的RAD51旁系同源物,其体外特性表征揭示了线虫RAD51旁系同源物在HR过程中的新功能。人类RAD51旁系同源物在HR和复制性损伤修复过程中的功能保守性,证明了RAD51介导蛋白在人类健康和基因组完整性中如何发挥关键作用。总之,这些新发现为理解在多种细胞环境下DNA修复过程中的Rad51及其介导蛋白提供了一个框架。