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Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae

Controlled RNA degradation is a crucial process in bacterial cell biology for maintaining proper transcriptome homeostasis and adaptation to changing environments. mRNA turnover in many Gram-positive bacteria involves a specialized ribonuclease called RNase J (RnJ). To date, however, nothing is know...

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Autores principales: Luong, Truc Thanh, Nguyen, Minh Tan, Chen, Yi-Wei, Chang, Chungyu, Lee, Ju Huck, Wittchen, Manuel, Ton-That, HyLam, Cruz, Melissa, Garsin, Danielle A., Das, Asis, Tauch, Andreas, Ton-That, Hung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7917786/
https://www.ncbi.nlm.nih.gov/pubmed/33672886
http://dx.doi.org/10.3390/microorganisms9020389
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author Luong, Truc Thanh
Nguyen, Minh Tan
Chen, Yi-Wei
Chang, Chungyu
Lee, Ju Huck
Wittchen, Manuel
Ton-That, HyLam
Cruz, Melissa
Garsin, Danielle A.
Das, Asis
Tauch, Andreas
Ton-That, Hung
author_facet Luong, Truc Thanh
Nguyen, Minh Tan
Chen, Yi-Wei
Chang, Chungyu
Lee, Ju Huck
Wittchen, Manuel
Ton-That, HyLam
Cruz, Melissa
Garsin, Danielle A.
Das, Asis
Tauch, Andreas
Ton-That, Hung
author_sort Luong, Truc Thanh
collection PubMed
description Controlled RNA degradation is a crucial process in bacterial cell biology for maintaining proper transcriptome homeostasis and adaptation to changing environments. mRNA turnover in many Gram-positive bacteria involves a specialized ribonuclease called RNase J (RnJ). To date, however, nothing is known about this process in the diphtheria-causative pathogen Corynebacterium diphtheriae, nor is known the identity of this ribonuclease in this organism. Here, we report that C. diphtheriae DIP1463 encodes a predicted RnJ homolog, comprised of a conserved N-terminal β-lactamase domain, followed by β-CASP and C-terminal domains. A recombinant protein encompassing the β-lactamase domain alone displays 5′-exoribonuclease activity, which is abolished by alanine-substitution of the conserved catalytic residues His(186) and His(188). Intriguingly, deletion of DIP1463/rnj in C. diphtheriae reduces bacterial growth and generates cell shape abnormality with markedly augmented cell width. Comparative RNA-seq analysis revealed that RnJ controls a large regulon encoding many factors predicted to be involved in biosynthesis, regulation, transport, and iron acquisition. One upregulated gene in the ∆rnj mutant is ftsH, coding for a membrane protease (FtsH) involved in cell division, whose overexpression in the wild-type strain also caused cell-width augmentation. Critically, the ∆rnj mutant is severely attenuated in virulence in a Caenorhabditis elegans model of infection, while the FtsH-overexpressing and toxin-less strains exhibit full virulence as the wild-type strain. Evidently, RNase J is a key ribonuclease in C. diphtheriae that post-transcriptionally influences the expression of numerous factors vital to corynebacterial cell physiology and virulence. Our findings have significant implications for basic biological processes and mechanisms of corynebacterial pathogenesis.
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spelling pubmed-79177862021-03-02 Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae Luong, Truc Thanh Nguyen, Minh Tan Chen, Yi-Wei Chang, Chungyu Lee, Ju Huck Wittchen, Manuel Ton-That, HyLam Cruz, Melissa Garsin, Danielle A. Das, Asis Tauch, Andreas Ton-That, Hung Microorganisms Article Controlled RNA degradation is a crucial process in bacterial cell biology for maintaining proper transcriptome homeostasis and adaptation to changing environments. mRNA turnover in many Gram-positive bacteria involves a specialized ribonuclease called RNase J (RnJ). To date, however, nothing is known about this process in the diphtheria-causative pathogen Corynebacterium diphtheriae, nor is known the identity of this ribonuclease in this organism. Here, we report that C. diphtheriae DIP1463 encodes a predicted RnJ homolog, comprised of a conserved N-terminal β-lactamase domain, followed by β-CASP and C-terminal domains. A recombinant protein encompassing the β-lactamase domain alone displays 5′-exoribonuclease activity, which is abolished by alanine-substitution of the conserved catalytic residues His(186) and His(188). Intriguingly, deletion of DIP1463/rnj in C. diphtheriae reduces bacterial growth and generates cell shape abnormality with markedly augmented cell width. Comparative RNA-seq analysis revealed that RnJ controls a large regulon encoding many factors predicted to be involved in biosynthesis, regulation, transport, and iron acquisition. One upregulated gene in the ∆rnj mutant is ftsH, coding for a membrane protease (FtsH) involved in cell division, whose overexpression in the wild-type strain also caused cell-width augmentation. Critically, the ∆rnj mutant is severely attenuated in virulence in a Caenorhabditis elegans model of infection, while the FtsH-overexpressing and toxin-less strains exhibit full virulence as the wild-type strain. Evidently, RNase J is a key ribonuclease in C. diphtheriae that post-transcriptionally influences the expression of numerous factors vital to corynebacterial cell physiology and virulence. Our findings have significant implications for basic biological processes and mechanisms of corynebacterial pathogenesis. MDPI 2021-02-14 /pmc/articles/PMC7917786/ /pubmed/33672886 http://dx.doi.org/10.3390/microorganisms9020389 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Luong, Truc Thanh
Nguyen, Minh Tan
Chen, Yi-Wei
Chang, Chungyu
Lee, Ju Huck
Wittchen, Manuel
Ton-That, HyLam
Cruz, Melissa
Garsin, Danielle A.
Das, Asis
Tauch, Andreas
Ton-That, Hung
Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae
title Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae
title_full Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae
title_fullStr Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae
title_full_unstemmed Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae
title_short Ribonuclease J-Mediated mRNA Turnover Modulates Cell Shape, Metabolism and Virulence in Corynebacterium diphtheriae
title_sort ribonuclease j-mediated mrna turnover modulates cell shape, metabolism and virulence in corynebacterium diphtheriae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7917786/
https://www.ncbi.nlm.nih.gov/pubmed/33672886
http://dx.doi.org/10.3390/microorganisms9020389
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