Cargando…

Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems

Cyclic-di-GMP (c-di-GMP) is a ubiquitous bacterial signaling molecule that regulates a variety of complex processes through a diverse set of c-di-GMP receptor proteins. We have utilized a systematic approach to identify c-di-GMP receptors from the pathogen Vibrio cholerae using the Differential Radi...

Descripción completa

Detalles Bibliográficos
Autores principales: Roelofs, Kevin G., Jones, Christopher J., Helman, Sarah R., Shang, Xiaoran, Orr, Mona W., Goodson, Jonathan R., Galperin, Michael Y., Yildiz, Fitnat H., Lee, Vincent T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4624772/
https://www.ncbi.nlm.nih.gov/pubmed/26506097
http://dx.doi.org/10.1371/journal.ppat.1005232
_version_ 1782397857318305792
author Roelofs, Kevin G.
Jones, Christopher J.
Helman, Sarah R.
Shang, Xiaoran
Orr, Mona W.
Goodson, Jonathan R.
Galperin, Michael Y.
Yildiz, Fitnat H.
Lee, Vincent T.
author_facet Roelofs, Kevin G.
Jones, Christopher J.
Helman, Sarah R.
Shang, Xiaoran
Orr, Mona W.
Goodson, Jonathan R.
Galperin, Michael Y.
Yildiz, Fitnat H.
Lee, Vincent T.
author_sort Roelofs, Kevin G.
collection PubMed
description Cyclic-di-GMP (c-di-GMP) is a ubiquitous bacterial signaling molecule that regulates a variety of complex processes through a diverse set of c-di-GMP receptor proteins. We have utilized a systematic approach to identify c-di-GMP receptors from the pathogen Vibrio cholerae using the Differential Radial Capillary Action of Ligand Assay (DRaCALA). The DRaCALA screen identified a majority of known c-di-GMP binding proteins in V. cholerae and revealed a novel c-di-GMP binding protein, MshE (VC0405), an ATPase associated with the mannose sensitive hemagglutinin (MSHA) type IV pilus. The known c-di-GMP binding proteins identified by DRaCALA include diguanylate cyclases, phosphodiesterases, PilZ domain proteins and transcription factors VpsT and VpsR, indicating that the DRaCALA-based screen of open reading frame libraries is a feasible approach to uncover novel receptors of small molecule ligands. Since MshE lacks the canonical c-di-GMP-binding motifs, a truncation analysis was utilized to locate the c-di-GMP binding activity to the N-terminal T2SSE_N domain. Alignment of MshE homologs revealed candidate conserved residues responsible for c-di-GMP binding. Site-directed mutagenesis of these candidate residues revealed that the Arg9 residue is required for c-di-GMP binding. The ability of c-di-GMP binding to MshE to regulate MSHA dependent processes was evaluated. The R9A allele, in contrast to the wild type MshE, was unable to complement the ΔmshE mutant for the production of extracellular MshA to the cell surface, reduction in flagella swimming motility, attachment to surfaces and formation of biofilms. Testing homologs of MshE for binding to c-di-GMP identified the type II secretion ATPase of Pseudomonas aeruginosa (PA14_29490) as a c-di-GMP receptor, indicating that type II secretion and type IV pili are both regulated by c-di-GMP.
format Online
Article
Text
id pubmed-4624772
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-46247722015-11-06 Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems Roelofs, Kevin G. Jones, Christopher J. Helman, Sarah R. Shang, Xiaoran Orr, Mona W. Goodson, Jonathan R. Galperin, Michael Y. Yildiz, Fitnat H. Lee, Vincent T. PLoS Pathog Research Article Cyclic-di-GMP (c-di-GMP) is a ubiquitous bacterial signaling molecule that regulates a variety of complex processes through a diverse set of c-di-GMP receptor proteins. We have utilized a systematic approach to identify c-di-GMP receptors from the pathogen Vibrio cholerae using the Differential Radial Capillary Action of Ligand Assay (DRaCALA). The DRaCALA screen identified a majority of known c-di-GMP binding proteins in V. cholerae and revealed a novel c-di-GMP binding protein, MshE (VC0405), an ATPase associated with the mannose sensitive hemagglutinin (MSHA) type IV pilus. The known c-di-GMP binding proteins identified by DRaCALA include diguanylate cyclases, phosphodiesterases, PilZ domain proteins and transcription factors VpsT and VpsR, indicating that the DRaCALA-based screen of open reading frame libraries is a feasible approach to uncover novel receptors of small molecule ligands. Since MshE lacks the canonical c-di-GMP-binding motifs, a truncation analysis was utilized to locate the c-di-GMP binding activity to the N-terminal T2SSE_N domain. Alignment of MshE homologs revealed candidate conserved residues responsible for c-di-GMP binding. Site-directed mutagenesis of these candidate residues revealed that the Arg9 residue is required for c-di-GMP binding. The ability of c-di-GMP binding to MshE to regulate MSHA dependent processes was evaluated. The R9A allele, in contrast to the wild type MshE, was unable to complement the ΔmshE mutant for the production of extracellular MshA to the cell surface, reduction in flagella swimming motility, attachment to surfaces and formation of biofilms. Testing homologs of MshE for binding to c-di-GMP identified the type II secretion ATPase of Pseudomonas aeruginosa (PA14_29490) as a c-di-GMP receptor, indicating that type II secretion and type IV pili are both regulated by c-di-GMP. Public Library of Science 2015-10-27 /pmc/articles/PMC4624772/ /pubmed/26506097 http://dx.doi.org/10.1371/journal.ppat.1005232 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Roelofs, Kevin G.
Jones, Christopher J.
Helman, Sarah R.
Shang, Xiaoran
Orr, Mona W.
Goodson, Jonathan R.
Galperin, Michael Y.
Yildiz, Fitnat H.
Lee, Vincent T.
Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems
title Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems
title_full Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems
title_fullStr Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems
title_full_unstemmed Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems
title_short Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems
title_sort systematic identification of cyclic-di-gmp binding proteins in vibrio cholerae reveals a novel class of cyclic-di-gmp-binding atpases associated with type ii secretion systems
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4624772/
https://www.ncbi.nlm.nih.gov/pubmed/26506097
http://dx.doi.org/10.1371/journal.ppat.1005232
work_keys_str_mv AT roelofskeving systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT joneschristopherj systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT helmansarahr systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT shangxiaoran systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT orrmonaw systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT goodsonjonathanr systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT galperinmichaely systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT yildizfitnath systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems
AT leevincentt systematicidentificationofcyclicdigmpbindingproteinsinvibriocholeraerevealsanovelclassofcyclicdigmpbindingatpasesassociatedwithtypeiisecretionsystems