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核糖核酸酶III参与对温度冲击和氧化应激的适应。 (原文句子不完整,推测补充完整后是这样的翻译)

RNase III Participates in the Adaptation to Temperature Shock and Oxidative Stress in .

作者信息

Lejars Maxence, Hajnsdorf Eliane

机构信息

UMR8261, Institut de Biologie Physico-Chimique, CNRS, Université Paris Cité, 75005 Paris, France.

出版信息

Microorganisms. 2022 Mar 24;10(4):699. doi: 10.3390/microorganisms10040699.

Abstract

Bacteria thrive in ever-changing environments by quickly remodeling their transcriptome and proteome via complex regulatory circuits. Regulation occurs at multiple steps, from the transcription of genes to the post-translational modification of proteins, via both protein and RNA regulators. At the post-transcriptional level, the RNA fate is balanced through the binding of ribosomes, chaperones and ribonucleases. We aim to decipher the role of the double-stranded-RNA-specific endoribonuclease RNase III and to evaluate its biological importance in the adaptation to modifications of the environment. The inactivation of RNase III affects a large number of genes and leads to several phenotypical defects, such as reduced thermotolerance in . In this study, we reveal that RNase III inactivation leads to an increased sensitivity to temperature shock and oxidative stress. We further show that RNase III is important for the induction of the heat shock sigma factor RpoH and for the expression of the superoxide dismutase SodA.

摘要

细菌通过复杂的调控回路快速重塑其转录组和蛋白质组,从而在不断变化的环境中茁壮成长。调控发生在多个步骤,从基因转录到蛋白质的翻译后修饰,涉及蛋白质和RNA调控因子。在转录后水平,RNA的命运通过核糖体、分子伴侣和核糖核酸酶的结合来平衡。我们旨在破译双链RNA特异性内切核糖核酸酶RNase III的作用,并评估其在适应环境变化中的生物学重要性。RNase III的失活会影响大量基因,并导致多种表型缺陷,如在……中耐热性降低。在本研究中,我们发现RNase III失活会导致对温度冲击和氧化应激的敏感性增加。我们进一步表明,RNase III对于热休克sigma因子RpoH的诱导和超氧化物歧化酶SodA的表达很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5a9/9032294/308b1751dd56/microorganisms-10-00699-g001.jpg

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