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首页> 外文期刊>Journal of Zhejiang University. Science, B >Functional analysis of helicase and three tandem HRDC domains of RecQ in Deinococcus radiodurans
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Functional analysis of helicase and three tandem HRDC domains of RecQ in Deinococcus radiodurans

机译:耐肺炎菌液催化催化螺旋酶及三个串联HRDC结构域的功能分析

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recQ is a highly conserved helicase necessary for maintaining genome stability in all organisms. Genome comparison showed that a homologue of recQ in Deinococcus radiodurans%29&ck%5B%5D=abstract&ck%5B%5D=keyword'>Deinococcus radiodurans designated as DR1289 is a member of recQ family with unusual domain arrangement: a helicase domain, an recQ C-terminal domain, and surprisingly three HRDC domain repeats, whose function, however, remains obscure currently. Using an insertion deletion, we discovered that the DRrecQ mutation causes an increase in gamma radiation, hydroxyurea and mitomycine C and UV sensitivity. Using the shuttle plasmid pRADK, we complemented various domains of the D. radiodurans recQ (DRrecQ) to the mutant in vivo. Results suggested that both the helicase and helicase-and-RNase-D-C-terminal (HRDC) domains are essential for complementing several phenotypes. The complementation and biochemical function of DRrecQ variants with different domains truncated in vitro suggested that both the helicase and three HRDC domains are necessary for recQ functions in D. radiodurans, while three HRDC domains have a synergistic effect on the whole function. Our finding leads to the hypothesis that the RecF recombination pathway is likely a primary path of double strand break repair in this well-known radioresistant organism.
机译:RECQ是一种高度保守的螺旋酶,用于维持所有生物体的基因组稳定性。基因组比较表明,Deinococcus radiodurans%29和CK%5b%5d =摘要&ck%5b%5d =关键词'> Deinococcus radiodurans,指定为DR1289,是具有不寻常的域排列的RECQ系列:Helicase域,RECQ COM - 终端域,令人惊讶的三个HRDC域重复,但其功能目前仍然模糊不清。使用插入缺失,我们发现DRRRCQ突变导致γ辐射,羟基脲和丝霉素C和紫外敏感性增加。使用梭子质粒级,我们将D. radiodurans的各个领域与体内体内的突变体相提并论。结果表明,氦酶和螺旋酶和RNase-D-C末端(HRDC)结构域对于补充几种表型来说是必不可少的。 DRRECQ变体与不同域的互补和生化功能截短于体外,提出了直升机和三个HRDC结构域在D. radiodurans中的RECQ功能是必要的,而三个HRDC结构域对整个功能具有协同作用。我们的发现导致假设,即RECF重组途径可能在该众所周知的放射性生物体中的双链断裂修复的主要路径。

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