School of Biology, University of St Andrews, North Haugh, St Andrews, Fife KY16 9TF, UK.
Nucleic Acids Res. 2012 Feb;40(3):1077-90. doi: 10.1093/nar/gkr838. Epub 2011 Oct 5.
Single-stranded DNA-binding proteins (SSBs) play vital roles in all aspects of DNA metabolism in all three domains of life and are characterized by the presence of one or more OB fold ssDNA-binding domains. Here, using the genetically tractable euryarchaeon Haloferax volcanii as a model, we present the first genetic analysis of SSB function in the archaea. We show that genes encoding the OB fold and zinc finger-containing RpaA1 and RpaB1 proteins are individually non-essential for cell viability but share an essential function, whereas the gene encoding the triple OB fold RpaC protein is essential. Loss of RpaC function can however be rescued by elevated expression of RpaB, indicative of functional overlap between the two classes of haloarchaeal SSB. Deletion analysis is used to demonstrate important roles for individual OB folds in RpaC and to show that conserved N- and C-terminal domains are required for efficient repair of DNA damage. Consistent with a role for RpaC in DNA repair, elevated expression of this protein leads to enhanced resistance to DNA damage. Taken together, our results offer important insights into archaeal SSB function and establish the haloarchaea as a valuable model for further studies.
单链 DNA 结合蛋白 (SSB) 在所有三个生命领域的 DNA 代谢的各个方面都发挥着至关重要的作用,其特征是存在一个或多个 OB 折叠 ssDNA 结合结构域。在这里,我们使用遗传上易于操作的广古菌泉古菌作为模型,首次对古菌中的 SSB 功能进行了遗传分析。我们表明,编码 OB 折叠和锌指结构的 RpaA1 和 RpaB1 蛋白的基因单独对于细胞活力不是必需的,但具有共同的必需功能,而编码三 OB 折叠 RpaC 蛋白的基因是必需的。然而,RpaC 功能的丧失可以通过 RpaB 的过表达来挽救,表明这两种类别的古菌 SSB 之间存在功能重叠。通过缺失分析证明了单个 OB 折叠在 RpaC 中的重要作用,并表明保守的 N 端和 C 端结构域对于有效修复 DNA 损伤是必需的。与 RpaC 在 DNA 修复中的作用一致,该蛋白的过表达导致对 DNA 损伤的抗性增强。总之,我们的结果为古菌 SSB 功能提供了重要的见解,并确立了泉古菌作为进一步研究的有价值模型。