Department of Molecular Medicine, The Scripps Research Institute, 10550 N. Torrey Pines Road, La Jolla, CA, 92037, USA.
Curr Genet. 2019 Jun;65(3):669-676. doi: 10.1007/s00294-018-0922-9. Epub 2019 Jan 2.
Duplication of the genome poses one of the most significant threats to genetic integrity, cellular fitness, and organismal health. Therefore, numerous mechanisms have evolved that maintain replication fork stability in the face of DNA damage and allow faithful genome duplication. The fission yeast BRCT-domain-containing protein Brc1, and its budding yeast orthologue Rtt107, has emerged as a "hub" factor that integrates multiple replication fork protection mechanisms. Notably, the cofactors and pathways through which Brc1, Rtt107, and their human orthologue (PTIP) act have appeared largely distinct. This either represents true evolutionary functional divergence, or perhaps an incomplete genetic and biochemical analysis of each protein. In this regard, we recently showed that like Rtt107, Brc1 supports key functions of the Smc5-Smc6 complex, including its recruitment into DNA repair foci, chromatin association, and SUMO ligase activity. Furthermore, fission yeast cells lacking the Nse5-Nse6 genome stability factor were found to exhibit defects in Smc5-Smc6 function, similar to but more severe than those in cells lacking Brc1. Here, we place these findings in context with the known functions of Brc1, Rtt107, and Smc5-Smc6, present data suggesting a role for acetylation in Smc5-Smc6 chromatin loading, and discuss wider implications for genome stability.
基因组重复是对遗传完整性、细胞适应性和生物健康的最大威胁之一。因此,已经进化出许多机制来维持复制叉的稳定性,以应对 DNA 损伤并允许忠实的基因组复制。裂殖酵母 BRCT 结构域蛋白 Brc1 及其芽殖酵母同源物 Rtt107 已成为整合多种复制叉保护机制的“枢纽”因子。值得注意的是,Brc1、Rtt107 及其人类同源物(PTIP)发挥作用的辅助因子和途径在很大程度上是不同的。这要么代表真正的进化功能分化,要么可能是对每种蛋白质的遗传和生化分析不完整。在这方面,我们最近表明,与 Rtt107 一样,Brc1 支持 Smc5-Smc6 复合物的关键功能,包括其招募到 DNA 修复焦点、染色质关联和 SUMO 连接酶活性。此外,发现缺乏 Nse5-Nse6 基因组稳定性因子的裂殖酵母细胞表现出 Smc5-Smc6 功能缺陷,类似于但比缺乏 Brc1 的细胞更严重。在这里,我们将这些发现置于 Brc1、Rtt107 和 Smc5-Smc6 的已知功能背景下,提出了乙酰化在 Smc5-Smc6 染色质加载中的作用的证据,并讨论了对基因组稳定性的更广泛影响。