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Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira

Leptospirosis is an emerging zoonotic disease with more than 1 million cases annually. Currently there is lack of evidence for signaling pathways involved during the infection process of Leptospira. In our comprehensive genomic analysis of 20 Leptospira spp. we identified seven pathogen-specific Two...

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Autores principales: Adhikarla, Haritha, Wunder, Elsio A., Mechaly, Ariel E., Mehta, Sameet, Wang, Zheng, Santos, Luciane, Bisht, Vimla, Diggle, Peter, Murray, Gerald, Adler, Ben, Lopez, Francesc, Townsend, Jeffrey P., Groisman, Eduardo, Picardeau, Mathieu, Buschiazzo, Alejandro, Ko, Albert I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863495/
https://www.ncbi.nlm.nih.gov/pubmed/29600195
http://dx.doi.org/10.3389/fcimb.2018.00045
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author Adhikarla, Haritha
Wunder, Elsio A.
Mechaly, Ariel E.
Mehta, Sameet
Wang, Zheng
Santos, Luciane
Bisht, Vimla
Diggle, Peter
Murray, Gerald
Adler, Ben
Lopez, Francesc
Townsend, Jeffrey P.
Groisman, Eduardo
Picardeau, Mathieu
Buschiazzo, Alejandro
Ko, Albert I.
author_facet Adhikarla, Haritha
Wunder, Elsio A.
Mechaly, Ariel E.
Mehta, Sameet
Wang, Zheng
Santos, Luciane
Bisht, Vimla
Diggle, Peter
Murray, Gerald
Adler, Ben
Lopez, Francesc
Townsend, Jeffrey P.
Groisman, Eduardo
Picardeau, Mathieu
Buschiazzo, Alejandro
Ko, Albert I.
author_sort Adhikarla, Haritha
collection PubMed
description Leptospirosis is an emerging zoonotic disease with more than 1 million cases annually. Currently there is lack of evidence for signaling pathways involved during the infection process of Leptospira. In our comprehensive genomic analysis of 20 Leptospira spp. we identified seven pathogen-specific Two-Component System (TCS) proteins. Disruption of two these TCS genes in pathogenic Leptospira strain resulted in loss-of-virulence in a hamster model of leptospirosis. Corresponding genes lvrA and lvrB (leptospira virulence regulator) are juxtaposed in an operon and are predicted to encode a hybrid histidine kinase and a hybrid response regulator, respectively. Transcriptome analysis of lvr mutant strains with disruption of one (lvrB) or both genes (lvrA/B) revealed global transcriptional regulation of 850 differentially expressed genes. Phosphotransfer assays demonstrated that LvrA phosphorylates LvrB and predicted further signaling downstream to one or more DNA-binding response regulators, suggesting that it is a branched pathway. Phylogenetic analyses indicated that lvrA and lvrB evolved independently within different ecological lineages in Leptospira via gene duplication. This study uncovers a novel-signaling pathway that regulates virulence in pathogenic Leptospira (Lvr), providing a framework to understand the molecular bases of regulation in this life-threatening bacterium.
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spelling pubmed-58634952018-03-29 Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira Adhikarla, Haritha Wunder, Elsio A. Mechaly, Ariel E. Mehta, Sameet Wang, Zheng Santos, Luciane Bisht, Vimla Diggle, Peter Murray, Gerald Adler, Ben Lopez, Francesc Townsend, Jeffrey P. Groisman, Eduardo Picardeau, Mathieu Buschiazzo, Alejandro Ko, Albert I. Front Cell Infect Microbiol Microbiology Leptospirosis is an emerging zoonotic disease with more than 1 million cases annually. Currently there is lack of evidence for signaling pathways involved during the infection process of Leptospira. In our comprehensive genomic analysis of 20 Leptospira spp. we identified seven pathogen-specific Two-Component System (TCS) proteins. Disruption of two these TCS genes in pathogenic Leptospira strain resulted in loss-of-virulence in a hamster model of leptospirosis. Corresponding genes lvrA and lvrB (leptospira virulence regulator) are juxtaposed in an operon and are predicted to encode a hybrid histidine kinase and a hybrid response regulator, respectively. Transcriptome analysis of lvr mutant strains with disruption of one (lvrB) or both genes (lvrA/B) revealed global transcriptional regulation of 850 differentially expressed genes. Phosphotransfer assays demonstrated that LvrA phosphorylates LvrB and predicted further signaling downstream to one or more DNA-binding response regulators, suggesting that it is a branched pathway. Phylogenetic analyses indicated that lvrA and lvrB evolved independently within different ecological lineages in Leptospira via gene duplication. This study uncovers a novel-signaling pathway that regulates virulence in pathogenic Leptospira (Lvr), providing a framework to understand the molecular bases of regulation in this life-threatening bacterium. Frontiers Media S.A. 2018-02-23 /pmc/articles/PMC5863495/ /pubmed/29600195 http://dx.doi.org/10.3389/fcimb.2018.00045 Text en Copyright © 2018 Adhikarla, Wunder, Mechaly, Mehta, Wang, Santos, Bisht, Diggle, Murray, Adler, Lopez, Townsend, Groisman, Picardeau, Buschiazzo and Ko. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Adhikarla, Haritha
Wunder, Elsio A.
Mechaly, Ariel E.
Mehta, Sameet
Wang, Zheng
Santos, Luciane
Bisht, Vimla
Diggle, Peter
Murray, Gerald
Adler, Ben
Lopez, Francesc
Townsend, Jeffrey P.
Groisman, Eduardo
Picardeau, Mathieu
Buschiazzo, Alejandro
Ko, Albert I.
Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira
title Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira
title_full Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira
title_fullStr Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira
title_full_unstemmed Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira
title_short Lvr, a Signaling System That Controls Global Gene Regulation and Virulence in Pathogenic Leptospira
title_sort lvr, a signaling system that controls global gene regulation and virulence in pathogenic leptospira
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863495/
https://www.ncbi.nlm.nih.gov/pubmed/29600195
http://dx.doi.org/10.3389/fcimb.2018.00045
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