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首页> 外文期刊>Microbiology >Characterization of the role of the RadS/RadR two-component system in the radiation resistance of Deinococcus radiodurans
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Characterization of the role of the RadS/RadR two-component system in the radiation resistance of Deinococcus radiodurans

机译:RADS / RADR双组分系统在Deinococcus radiodurans辐射抗性中的作用表征

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摘要

Deinococcus radiodurans shows extraordinary tolerance to DNA damage, and exhibits differential gene expression and protein recycling. A putative response regulator, the DRB0091 (RadR) ORF, was identified from a pool of DNA-binding proteins induced in response to gamma radiation in this bacterium. radR is located upstream of drB0090, which encodes a putative sensor histidine kinase (RadS) on the megaplasmid. Deletion of these genes both individually and together resulted in hypersensitivity to DNA-damaging agents and a delayed or altered double-strand break repair. A ΔradRradS double mutant and a ΔradR single mutant showed nearly identical responses to gamma radiation and UVC. Wild-type RadR and RadS complemented the corresponding mutant strains, but also exhibited significant cross-complementation, albeit at lower doses of gamma radiation. The radS transcript was not detected in the ΔradR mutant, suggesting the existence of a radRS operon. Recombinant RadS was autophosphorylated and could catalyse the transfer of γ phosphate from ATP to RadR in vitro. These results indicated the functional interaction of RadS and RadR, and suggested a role for the RadS/RadR two-component system in the radiation resistance of this bacterium.
机译:Deinococcus radiodurans显示出DNA损伤的非凡耐受性,并且表现出差异基因表达和蛋白质回收。推定的响应调节剂,DRB0091(RADR)ORF被从响应于该细菌中γ辐射诱导的DNA结合蛋白池中鉴定。 RADR位于DRB0090的上游,在MEGAPLASMID上编码推定的传感器组氨酸激酶(RAD)。单独删除这些基因,并共同导致对DNA损伤剂的过敏率和延迟或改变的双链断裂修复。 ΔRadrrads双突变体和ΔRADR单突变体显示出对γ辐射和UVC的几乎相同的反应。野生型Radr和Rad互补相应的突变菌株,但也表现出显着的交叉互补,尽管较低剂量的γ辐射。在Δradr突变体中未检测到RADS转录物,表明RADRS操纵子的存在。重组rads是自磷酸化的,可以催化在体外转移来自ATP到Radr的γ磷酸盐。这些结果表明了RAD和RADR的功能相互作用,并提出了在该细菌的辐射抗性中的Rads / Radr双组分系统的作用。

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