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Identification of essential and non-essential single-stranded DNA-binding proteins in a model archaeal organism

机译:鉴定模型古生物中必需和非必需的单链DNA结合蛋白

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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.
机译:单链DNA结合蛋白(SSB)在生命的所有三个域中都在DNA代谢的各个方面都起着至关重要的作用,其特征是存在一个或多个OB折叠ssDNA结合域。在这里,使用遗传易处理的euryarchaeon Haloferax volcanii作为模型,我们提出了古细菌中SSB功能的第一个遗传分析。我们表明,编码OB折叠和含锌指的RpaA1和RpaB1蛋白的基因对于细胞生存力而言分别是非必需的,但共有基本功能,而编码三重OB折叠RpaC蛋白的基因则必不可少。然而,RpaB表达的升高可挽救RpaC功能的丧失,这表明两类卤代古细菌SSB之间的功能重叠。缺失分析用于证明RpaC中单个OB折叠的重要作用,并显示保守的N和C端结构域是有效修复DNA损伤所必需的。与RpaC在DNA修复中的作用一致,该蛋白的表达升高导致对DNA损伤的抵抗力增强。两者合计,我们的结果提供了重要的洞察古细菌SSB的功能,并建立了古细菌作为进一步研究的有价值的模型。

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