...
首页> 外文期刊>Journal of bacteriology >The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
【24h】

The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity

机译:斯氏假单胞菌特异性调控非编码RNA NfiS靶向katB mRNA编码过氧化氢酶,对于最佳的抗氧化性和固氮酶活性必不可少

获取原文
           

摘要

Pseudomonas stutzeri A1501 is a versatile nitrogen-fixing bacterium capable of living in diverse environments and coping with various oxidative stresses. NfiS, a regulatory noncoding RNA (ncRNA) involved in the control of nitrogen fixation in A1501, was previously shown to be required for optimal resistance to H_(2)O_(2); however, the precise role of NfiS and the target genes involved in the oxidative stress response is entirely unknown. In this work, we systematically investigated the NfiS-based mechanisms underlying the response of this bacterium to H_(2)O_(2) at the cellular and molecular levels. A mutant strain carrying a deletion of nfiS showed significant downregulation of oxidative stress response genes, especially katB , a catalase gene, and oxyR , an essential regulator for transcription of catalase genes. Secondary structure prediction revealed two binding sites in NfiS for katB mRNA. Complementation experiments using truncated nfiS genes showed that each of two sites is functional, but not sufficient, for NfiS-mediated regulation of oxidative stress resistance and nitrogenase activities. Microscale thermophoresis assays further indicated direct base pairing between katB mRNA and NfiS at both sites 1 and 2, thus enhancing the half-life of the transcript. We also demonstrated that katB expression is dependent on OxyR and that both OxyR and KatB are essential for optimal oxidative stress resistance and nitrogenase activities. H_(2)O_(2) at low concentrations was detoxified by KatB, leaving O_(2) as a by-product to support nitrogen fixation under O_(2)-insufficient conditions. Moreover, our data suggest that the direct interaction between NfiS and katB mRNA is a conserved and widespread mechanism among P. stutzeri strains. IMPORTANCE Protection against oxygen damage is crucial for survival of nitrogen-fixing bacteria due to the extreme oxygen sensitivity of nitrogenase. This work exemplifies how the small ncRNA NfiS coordinates oxidative stress response and nitrogen fixation via base pairing with katB mRNA and nifK mRNA. Hence, NfiS acts as a molecular link to coordinate the expression of genes involved in oxidative stress response and nitrogen fixation. Our study provides the first insight into the biological functions of NfiS in oxidative stress regulation and adds a new regulation level to the mechanisms that contribute to the oxygen protection of the MoFe nitrogenase.
机译:施氏假单胞菌A1501是一种多功能的固氮细菌,能够生活在多种环境中并应对各种氧化胁迫。 NfiS,一种参与控制A1501固氮的非编码RNA(ncRNA),以前被证明对H_(2)O_(2)有最佳的抗性。然而,NfiS和目标基因参与氧化应激反应的确切作用是完全未知的。在这项工作中,我们系统地研究了基于NfiS的机制,这种机制在细胞和分子水平上都对H_(2)O_(2)的细菌产生了响应。携带nfiS缺失的突变菌株显示出氧化应激反应基因的显着下调,尤其是过氧化氢酶基因katB和过氧化氢酶基因转录的必需调节子oxyR。二级结构预测显示NfiS中有两个结合点,用于katB mRNA。使用截短的nfiS基因进行的互补实验表明,两个位点中的每一个都具有功能,但不足以用于NfiS介导的抗氧化应激性和固氮酶活性的调节。微型热电泳分析进一步表明,katB mRNA和NfiS之间在位点1和2都有直接的碱基配对,从而提高了转录物的半衰期。我们还证明了,katB的表达依赖于OxyR,OxyR和KatB都是最佳的抗氧化应激性和固氮酶活性所必需的。低浓度的H_(2)O_(2)被KatB解毒,留下O_(2)作为副产物以支持在O_(2)不足的条件下进行固氮。此外,我们的数据表明,NfiS和katB mRNA之间的直接相互作用是Stutzeri菌株中一种保守且广泛的机制。重要信息由于固氮酶对氧气的极高敏感性,防止氧气受损对于固氮细菌的生存至关重要。这项工作例证了小型ncRNA NfiS如何通过与katB mRNA和nifK mRNA碱基配对来协调氧化应激反应和固氮。因此,NfiS作为分子链接来协调参与氧化应激反应和固氮的基因的表达。我们的研究为NfiS在氧化应激调节中的生物学功能提供了第一个见识,并为有助于MoFe固氮酶氧保护的机制增加了新的调节水平。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号