Cargando…

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

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 re...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Hongyang, Zhan, Yuhua, Yan, Yongliang, Liu, Yichao, Hu, Guihua, Wang, Shanshan, Yang, Hua, Qiu, Xuemeng, Liu, Yaqun, Li, Jiang, Lu, Wei, Elmerich, Claudine, Lin, Min
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6755748/
https://www.ncbi.nlm.nih.gov/pubmed/31262840
http://dx.doi.org/10.1128/JB.00334-19
_version_ 1783453290471620608
author Zhang, Hongyang
Zhan, Yuhua
Yan, Yongliang
Liu, Yichao
Hu, Guihua
Wang, Shanshan
Yang, Hua
Qiu, Xuemeng
Liu, Yaqun
Li, Jiang
Lu, Wei
Elmerich, Claudine
Lin, Min
author_facet Zhang, Hongyang
Zhan, Yuhua
Yan, Yongliang
Liu, Yichao
Hu, Guihua
Wang, Shanshan
Yang, Hua
Qiu, Xuemeng
Liu, Yaqun
Li, Jiang
Lu, Wei
Elmerich, Claudine
Lin, Min
author_sort Zhang, Hongyang
collection PubMed
description 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.
format Online
Article
Text
id pubmed-6755748
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-67557482019-10-01 The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity Zhang, Hongyang Zhan, Yuhua Yan, Yongliang Liu, Yichao Hu, Guihua Wang, Shanshan Yang, Hua Qiu, Xuemeng Liu, Yaqun Li, Jiang Lu, Wei Elmerich, Claudine Lin, Min J Bacteriol Research Article 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. American Society for Microbiology 2019-09-06 /pmc/articles/PMC6755748/ /pubmed/31262840 http://dx.doi.org/10.1128/JB.00334-19 Text en Copyright © 2019 Zhang et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Zhang, Hongyang
Zhan, Yuhua
Yan, Yongliang
Liu, Yichao
Hu, Guihua
Wang, Shanshan
Yang, Hua
Qiu, Xuemeng
Liu, Yaqun
Li, Jiang
Lu, Wei
Elmerich, Claudine
Lin, Min
The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
title The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
title_full The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
title_fullStr The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
title_full_unstemmed The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
title_short The Pseudomonas stutzeri-Specific Regulatory Noncoding RNA NfiS Targets katB mRNA Encoding a Catalase Essential for Optimal Oxidative Resistance and Nitrogenase Activity
title_sort pseudomonas stutzeri-specific regulatory noncoding rna nfis targets katb mrna encoding a catalase essential for optimal oxidative resistance and nitrogenase activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6755748/
https://www.ncbi.nlm.nih.gov/pubmed/31262840
http://dx.doi.org/10.1128/JB.00334-19
work_keys_str_mv AT zhanghongyang thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT zhanyuhua thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT yanyongliang thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT liuyichao thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT huguihua thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT wangshanshan thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT yanghua thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT qiuxuemeng thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT liuyaqun thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT lijiang thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT luwei thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT elmerichclaudine thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT linmin thepseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT zhanghongyang pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT zhanyuhua pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT yanyongliang pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT liuyichao pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT huguihua pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT wangshanshan pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT yanghua pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT qiuxuemeng pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT liuyaqun pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT lijiang pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT luwei pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT elmerichclaudine pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity
AT linmin pseudomonasstutzerispecificregulatorynoncodingrnanfistargetskatbmrnaencodingacatalaseessentialforoptimaloxidativeresistanceandnitrogenaseactivity