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Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS

Helicobacter pylori are among the most successful human pathogens that harbour a distinct genomic segment called cag Pathogenicity Island (cag-PAI). This genomic segment codes for a type IV secretion system (Cag-T4SS) related to the prototypical VirB/D4 system of Agrobacterium tumefaciens (Ag), a pl...

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Autores principales: Shariq, Mohd, Kumar, Navin, Kumari, Rajesh, Kumar, Amarjeet, Subbarao, Naidu, Mukhopadhyay, Gauranga
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643968/
https://www.ncbi.nlm.nih.gov/pubmed/26565397
http://dx.doi.org/10.1371/journal.pone.0142606
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author Shariq, Mohd
Kumar, Navin
Kumari, Rajesh
Kumar, Amarjeet
Subbarao, Naidu
Mukhopadhyay, Gauranga
author_facet Shariq, Mohd
Kumar, Navin
Kumari, Rajesh
Kumar, Amarjeet
Subbarao, Naidu
Mukhopadhyay, Gauranga
author_sort Shariq, Mohd
collection PubMed
description Helicobacter pylori are among the most successful human pathogens that harbour a distinct genomic segment called cag Pathogenicity Island (cag-PAI). This genomic segment codes for a type IV secretion system (Cag-T4SS) related to the prototypical VirB/D4 system of Agrobacterium tumefaciens (Ag), a plant pathogen. Some of the components of Cag-T4SS share homology to that of VirB proteins including putative energy providing CagE (HP0544), the largest VirB4 homologue. In Ag, VirB4 is required for the assembly of the system, substrate translocation and pilus formation, however, very little is known about CagE. Here we have characterised the protein biochemically, genetically, and microscopically and report that CagE is an inner membrane associated active NTPase and has multiple interacting partners including the inner membrane proteins CagV and Cagβ. Through CagV it is connected to the outer membrane sub-complex proteins. Stability of CagE is not dependent on several of the cag-PAI proteins tested. However, localisation and stability of the pilus associated CagI, CagL and surface associated CagH are affected in its absence. Stability of the inner membrane associated energetic component Cagβ, a VirD4 homologue seems to be partially affected in its absence. Additionally, CagA failed to cross the membrane barriers in its absence and no IL-8 induction is observed under infection condition. These results thus suggest the importance of CagE in Cag-T4SS functions. In future it may help in deciphering the mechanism of substrate translocation by the system.
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spelling pubmed-46439682015-11-18 Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS Shariq, Mohd Kumar, Navin Kumari, Rajesh Kumar, Amarjeet Subbarao, Naidu Mukhopadhyay, Gauranga PLoS One Research Article Helicobacter pylori are among the most successful human pathogens that harbour a distinct genomic segment called cag Pathogenicity Island (cag-PAI). This genomic segment codes for a type IV secretion system (Cag-T4SS) related to the prototypical VirB/D4 system of Agrobacterium tumefaciens (Ag), a plant pathogen. Some of the components of Cag-T4SS share homology to that of VirB proteins including putative energy providing CagE (HP0544), the largest VirB4 homologue. In Ag, VirB4 is required for the assembly of the system, substrate translocation and pilus formation, however, very little is known about CagE. Here we have characterised the protein biochemically, genetically, and microscopically and report that CagE is an inner membrane associated active NTPase and has multiple interacting partners including the inner membrane proteins CagV and Cagβ. Through CagV it is connected to the outer membrane sub-complex proteins. Stability of CagE is not dependent on several of the cag-PAI proteins tested. However, localisation and stability of the pilus associated CagI, CagL and surface associated CagH are affected in its absence. Stability of the inner membrane associated energetic component Cagβ, a VirD4 homologue seems to be partially affected in its absence. Additionally, CagA failed to cross the membrane barriers in its absence and no IL-8 induction is observed under infection condition. These results thus suggest the importance of CagE in Cag-T4SS functions. In future it may help in deciphering the mechanism of substrate translocation by the system. Public Library of Science 2015-11-13 /pmc/articles/PMC4643968/ /pubmed/26565397 http://dx.doi.org/10.1371/journal.pone.0142606 Text en © 2015 Shariq et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Shariq, Mohd
Kumar, Navin
Kumari, Rajesh
Kumar, Amarjeet
Subbarao, Naidu
Mukhopadhyay, Gauranga
Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS
title Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS
title_full Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS
title_fullStr Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS
title_full_unstemmed Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS
title_short Biochemical Analysis of CagE: A VirB4 Homologue of Helicobacter pylori Cag-T4SS
title_sort biochemical analysis of cage: a virb4 homologue of helicobacter pylori cag-t4ss
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4643968/
https://www.ncbi.nlm.nih.gov/pubmed/26565397
http://dx.doi.org/10.1371/journal.pone.0142606
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