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RNA-Binding Domain is Necessary for PprM Function in Response to the Extreme Environmental Stress in Deinococcus radiodurans

机译:RNA结合结构域是必需的PprM功能以响应Deinococcus radiodurans中的极端环境压力。

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摘要

Deinococcus radiodurans was considered as one of the most radiation-resistant organisms on Earth because of its strong resistance to the damaging factors of both DNA and protein, including ionizing radiation, ultraviolet radiation, oxidants, and desiccation. PprM, as a bacterial cold shock protein homolog, was involved in the radiation resistance and oxidative stress response of D. radiodurans, but its potential mechanisms are poorly expounded. In this study, we found that PprM was highly conserved with the RNA-binding domain in Deinococcus genus through performing phylogenic analysis. Moreover, the paper presents the analysis on the tolerance of environmental stresses both in the wild-type and the pprM/pprM RBD mutant strains, demonstrating that pprM and RNA-binding domain disruptant strain were with higher sensitivity than the wild-type strain to cold stress, mitomycin C, UV radiation, and hydrogen peroxide. In the following step, the recombinant PprM was purified, with the finding that PprM was bound to the 5’-untranslated region of its own mRNA by gel mobility shift assay in vitro. With all these findings taken into consideration, it was suggested that PprM act as a cold shock protein and its RNA-binding domain may be involved in reaction to the extreme environmental stress in D. radiodurans.Electronic supplementary materialThe online version of this article (doi:10.1007/s12088-017-0684-y) contains supplementary material, which is available to authorized users.
机译:辐射球菌被认为是地球上最抗辐射的生物之一,因为它对DNA和蛋白质的破坏因子(包括电离辐射,紫外线辐射,氧化剂和干燥剂)具有很强的抵抗力。 PprM,作为一种细菌冷休克蛋白同源物,参与了放射线虫的抗辐射性和氧化应激反应,但其潜在机制尚未充分阐明。在这项研究中,我们发现通过进行系统发育分析,PprM与Deinococcus属中的RNA结合结构域高度保守。此外,本文对野生型和pprM / pprM RBD突变菌株的环境胁迫耐受性进行了分析,表明pprM和RNA结合结构域破坏菌株比野生型菌株对寒冷的敏感性更高。压力,丝裂霉素C,紫外线辐射和过氧化氢。在接下来的步骤中,纯化重组PprM,发现通过体外凝胶迁移率测定法将PprM结合到其自身mRNA的5'-非翻译区。考虑到所有这些发现后,建议PprM充当冷休克蛋白,其RNA结合结构域可能参与放射性杜鹃中极端环境胁迫的反应。电子补充材料本文的在线版本(doi :10.1007 / s12088-017-0684-y)包含补充材料,授权用户可以使用。

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