Institute of Genetics, Biological Research Center, Hungarian Academy of Sciences, Szeged, Temesvari krt.62, H-6726, Hungary.
DNA Repair (Amst). 2010 Mar 2;9(3):257-67. doi: 10.1016/j.dnarep.2009.12.013. Epub 2010 Jan 21.
In the yeast Saccharomyces cerevisiae, the Rad6-Rad18 DNA damage tolerance pathway constitutes a major defense system against replication fork blocking DNA lesions. The Rad6-Rad18 ubiquitin-conjugating/ligase complex governs error-free and error-prone translesion synthesis by specialized DNA polymerases, as well as an error-free Rad5-dependent postreplicative repair pathway. For facilitating replication through DNA lesions, translesion synthesis polymerases copy directly from the damaged template, while the Rad5-dependent damage tolerance pathway obtains information from the newly synthesized strand of the undamaged sister duplex. Although genetic data demonstrate the importance of the Rad5-dependent pathway in tolerating DNA damages, there has been little understanding of its mechanism. Also, the conservation of the yeast Rad5-dependent pathway in higher order eukaryotic cells remained uncertain for a long time. Here we summarize findings published in recent years regarding the role of Rad5 in promoting error-free replication of damaged DNA, and we also discuss results obtained with its human orthologs, HLTF and SHPRH.
在酵母酿酒酵母中,Rad6-Rad18 损伤容忍途径构成了主要的防御系统,以对抗复制叉阻断的 DNA 损伤。Rad6-Rad18 泛素缀合/连接酶复合物通过专门的 DNA 聚合酶控制无差错和易错跨损伤合成,以及无差错 Rad5 依赖性复制后修复途径。为了促进通过 DNA 损伤的复制,跨损伤合成聚合酶直接从受损模板复制,而 Rad5 依赖性损伤容忍途径从未受损姐妹双链体的新合成链获取信息。尽管遗传数据表明 Rad5 依赖性途径在耐受 DNA 损伤方面的重要性,但对其机制的了解甚少。此外,酵母 Rad5 依赖性途径在高等真核细胞中的保守性长期以来一直不确定。在这里,我们总结了近年来关于 Rad5 在促进受损 DNA 无差错复制中的作用的研究结果,我们还讨论了其人类同源物 HLTF 和 SHPRH 的研究结果。