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首页> 外文期刊>Functional & integrative genomics >The SbcC and SbcD homologs of the cyanobacterium Anabaena sp strain PCC7120 (Alr3988 and All4463) contribute independently to DNA repair
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The SbcC and SbcD homologs of the cyanobacterium Anabaena sp strain PCC7120 (Alr3988 and All4463) contribute independently to DNA repair

机译:SBCC和SBCD anabaena SP菌株PCC7120(ALR3988和ALL4463)的SBCD同源物独立贡献DNA修复

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摘要

The ubiquitous SbcCD exonuclease complex has been shown to perform an important role in DNA repair across prokaryotes and eukaryotes. However, they have remained uncharacterized in the ancient and stress-tolerant cyanobacteria. In the cyanobacterium Anabaena sp. strain PCC7120, SbcC and SbcD homologs, defined on the basis of the presence of corresponding functional domains, are annotated as hypothetical proteins, namely Alr3988 and All4463 respectively. Unlike the presence of sbcC and sbcD genes in a bicistronic operon in most organisms, these genes were distantly placed on the chromosome in Anabaena, and found to be negatively regulated by LexA. Both the genes were found to be essential in Anabaena as the individual deletion mutants were non-viable. On the other hand, the proteins could be individually overexpressed in Anabaena with no effect on normal cell physiology. However, they contributed positively to enhance the tolerance to different DNA damage-inducing stresses, such as mitomycin C and UV- and gamma-radiation. This indicated that the two proteins, at least when overexpressed, could function independently and mitigate the damage caused due to the formation of DNA adducts and single- and double-strand breaks in Anabaena. This is the first report on possible independent in vivo functioning of SbcC and SbcD homologs in any bacteria, and the first effort to functionally characterize the proteins in any cyanobacteria.
机译:已经证明普遍存在的SBCCD外切核酸酶复合物在原核生物和真核生物上的DNA修复中表现在DNA修复中。然而,它们在古老和耐受耐受性的蓝藻中保持不协调。在蓝色的anabaena sp。菌株PCC7120,SBCC和SBCD同源物在基于相应功能域的存在的基础上定义,分别作为假想蛋白质,即ALL3988和ALL4463注释。与在大多数生物中的双顺调制操纵子中的SBCC和SBCD基因的存在不同,这些基因远远地置于Anabaena的染色体上,发现由Lexa负调节。由于个体缺失突变体不可行,发现这两个基因都被认为是Anabaena。另一方面,蛋白质可以在Anabaena中单独过表达,对正常细胞生理没有影响。然而,它们对增强对不同DNA损伤诱导应力的耐受性,例如丝霉素C和UV-和γ-辐射。这表明两种蛋白至少在过表达时可以独立起作用并减轻由于DNA加合物的形成和anabaena的单链和双链断裂引起的损伤。这是第一报告可以在任何细菌中独立于SBCC和SBCD同源物的体内功能,以及在任何蓝菌细菌中功能表征蛋白质的第一次努力。

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