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A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity

Brucella abortus is a bacterial pathogen causing bovine brucellosis worldwide. This facultative extracellular–intracellular pathogen can be transmitted to humans, leading to a zoonotic disease. The disease remains a public health concern, particularly in regions where livestock farming is present. T...

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Autores principales: Rivas-Solano, Olga, Núñez-Montero, Kattia, Altamirano-Silva, Pamela, Ruiz-Villalobos, Nazareth, Barquero-Calvo, Elías, Moreno, Edgardo, Chaves-Olarte, Esteban, Guzmán-Verri, Caterina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459465/
https://www.ncbi.nlm.nih.gov/pubmed/37630574
http://dx.doi.org/10.3390/microorganisms11082014
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author Rivas-Solano, Olga
Núñez-Montero, Kattia
Altamirano-Silva, Pamela
Ruiz-Villalobos, Nazareth
Barquero-Calvo, Elías
Moreno, Edgardo
Chaves-Olarte, Esteban
Guzmán-Verri, Caterina
author_facet Rivas-Solano, Olga
Núñez-Montero, Kattia
Altamirano-Silva, Pamela
Ruiz-Villalobos, Nazareth
Barquero-Calvo, Elías
Moreno, Edgardo
Chaves-Olarte, Esteban
Guzmán-Verri, Caterina
author_sort Rivas-Solano, Olga
collection PubMed
description Brucella abortus is a bacterial pathogen causing bovine brucellosis worldwide. This facultative extracellular–intracellular pathogen can be transmitted to humans, leading to a zoonotic disease. The disease remains a public health concern, particularly in regions where livestock farming is present. The two-component regulatory system BvrR/BvrS was described by isolating the attenuated transposition mutants bvrR::Tn5 and bvrS::Tn5, whose characterization led to the understanding of the role of the system in bacterial survival. However, a phenotypic comparison with deletion mutants has not been performed because their construction has been unsuccessful in brucellae and difficult in phylogenetically related Rhizobiales with BvrR/BvrS orthologs. Here, we used an unmarked gene excision strategy to generate a B. abortus mutant strain lacking both genes, called B. abortus ∆bvrRS. The deletion was verified through PCR, Southern blot, Western blot, Sanger sequencing, and whole-genome sequencing, confirming a clean mutation without further alterations at the genome level. B. abortus ∆bvrRS shared attenuated phenotypic traits with both transposition mutants, confirming the role of BvrR/BvrS in pathogenesis and membrane integrity. This B. abortus ∆bvrRS with a non-antimicrobial marker is an excellent tool for continuing studies on the role of BvrR/BvrS in the B. abortus lifestyle.
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spelling pubmed-104594652023-08-27 A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity Rivas-Solano, Olga Núñez-Montero, Kattia Altamirano-Silva, Pamela Ruiz-Villalobos, Nazareth Barquero-Calvo, Elías Moreno, Edgardo Chaves-Olarte, Esteban Guzmán-Verri, Caterina Microorganisms Article Brucella abortus is a bacterial pathogen causing bovine brucellosis worldwide. This facultative extracellular–intracellular pathogen can be transmitted to humans, leading to a zoonotic disease. The disease remains a public health concern, particularly in regions where livestock farming is present. The two-component regulatory system BvrR/BvrS was described by isolating the attenuated transposition mutants bvrR::Tn5 and bvrS::Tn5, whose characterization led to the understanding of the role of the system in bacterial survival. However, a phenotypic comparison with deletion mutants has not been performed because their construction has been unsuccessful in brucellae and difficult in phylogenetically related Rhizobiales with BvrR/BvrS orthologs. Here, we used an unmarked gene excision strategy to generate a B. abortus mutant strain lacking both genes, called B. abortus ∆bvrRS. The deletion was verified through PCR, Southern blot, Western blot, Sanger sequencing, and whole-genome sequencing, confirming a clean mutation without further alterations at the genome level. B. abortus ∆bvrRS shared attenuated phenotypic traits with both transposition mutants, confirming the role of BvrR/BvrS in pathogenesis and membrane integrity. This B. abortus ∆bvrRS with a non-antimicrobial marker is an excellent tool for continuing studies on the role of BvrR/BvrS in the B. abortus lifestyle. MDPI 2023-08-05 /pmc/articles/PMC10459465/ /pubmed/37630574 http://dx.doi.org/10.3390/microorganisms11082014 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rivas-Solano, Olga
Núñez-Montero, Kattia
Altamirano-Silva, Pamela
Ruiz-Villalobos, Nazareth
Barquero-Calvo, Elías
Moreno, Edgardo
Chaves-Olarte, Esteban
Guzmán-Verri, Caterina
A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity
title A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity
title_full A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity
title_fullStr A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity
title_full_unstemmed A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity
title_short A bvrR/bvrS Non-Polar Brucella abortus Mutant Confirms the Role of the Two-Component System BvrR/BvrS in Virulence and Membrane Integrity
title_sort bvrr/bvrs non-polar brucella abortus mutant confirms the role of the two-component system bvrr/bvrs in virulence and membrane integrity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459465/
https://www.ncbi.nlm.nih.gov/pubmed/37630574
http://dx.doi.org/10.3390/microorganisms11082014
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