Cargando…

Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition

Similar to most Gram-negative bacteria, the outer leaflet of the outer membrane of Vibrio cholerae is comprised of lipopolysaccharide. Previous reports have proposed that V. cholerae serogroups O1 and O139 synthesize structurally different lipid A domains, which anchor lipopolysaccharide within the...

Descripción completa

Detalles Bibliográficos
Autores principales: Hankins, Jessica V, Madsen, James A, Giles, David K, Childers, Brandon M, Klose, Karl E, Brodbelt, Jennifer S, Trent, M Stephen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3178793/
https://www.ncbi.nlm.nih.gov/pubmed/21752109
http://dx.doi.org/10.1111/j.1365-2958.2011.07765.x
_version_ 1782212438254419968
author Hankins, Jessica V
Madsen, James A
Giles, David K
Childers, Brandon M
Klose, Karl E
Brodbelt, Jennifer S
Trent, M Stephen
author_facet Hankins, Jessica V
Madsen, James A
Giles, David K
Childers, Brandon M
Klose, Karl E
Brodbelt, Jennifer S
Trent, M Stephen
author_sort Hankins, Jessica V
collection PubMed
description Similar to most Gram-negative bacteria, the outer leaflet of the outer membrane of Vibrio cholerae is comprised of lipopolysaccharide. Previous reports have proposed that V. cholerae serogroups O1 and O139 synthesize structurally different lipid A domains, which anchor lipopolysaccharide within the outer membrane. In the current study, intact lipid A species of V. cholerae O1 and O139 were analysed by mass spectrometry. We demonstrate that V. cholerae serogroups associated with human disease synthesize a similar asymmetrical hexa-acylated lipid A species, bearing a myristate (C14:0) and 3-hydroxylaurate (3-OH C12:0) at the 2′- and 3′-positions respectively. A previous report from our laboratory characterized the V. cholerae LpxL homologue Vc0213, which transfers a C14:0 to the 2′-position of the glucosamine disaccharide. Our current findings identify V. cholerae Vc0212 as a novel lipid A secondary hydroxy-acyltransferase, termed LpxN, responsible for transferring the 3-hydroxylaurate (3-OH C12:0) to the V. cholerae lipid A domain. Importantly, the presence of a 3-hydroxyl group on the 3′-linked secondary acyl chain was found to promote antimicrobial peptide resistance in V. cholerae; however, this functional group was not required for activation of the innate immune response.
format Online
Article
Text
id pubmed-3178793
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-31787932011-09-28 Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition Hankins, Jessica V Madsen, James A Giles, David K Childers, Brandon M Klose, Karl E Brodbelt, Jennifer S Trent, M Stephen Mol Microbiol Research Articles Similar to most Gram-negative bacteria, the outer leaflet of the outer membrane of Vibrio cholerae is comprised of lipopolysaccharide. Previous reports have proposed that V. cholerae serogroups O1 and O139 synthesize structurally different lipid A domains, which anchor lipopolysaccharide within the outer membrane. In the current study, intact lipid A species of V. cholerae O1 and O139 were analysed by mass spectrometry. We demonstrate that V. cholerae serogroups associated with human disease synthesize a similar asymmetrical hexa-acylated lipid A species, bearing a myristate (C14:0) and 3-hydroxylaurate (3-OH C12:0) at the 2′- and 3′-positions respectively. A previous report from our laboratory characterized the V. cholerae LpxL homologue Vc0213, which transfers a C14:0 to the 2′-position of the glucosamine disaccharide. Our current findings identify V. cholerae Vc0212 as a novel lipid A secondary hydroxy-acyltransferase, termed LpxN, responsible for transferring the 3-hydroxylaurate (3-OH C12:0) to the V. cholerae lipid A domain. Importantly, the presence of a 3-hydroxyl group on the 3′-linked secondary acyl chain was found to promote antimicrobial peptide resistance in V. cholerae; however, this functional group was not required for activation of the innate immune response. Blackwell Publishing Ltd 2011-09 2011-07-18 /pmc/articles/PMC3178793/ /pubmed/21752109 http://dx.doi.org/10.1111/j.1365-2958.2011.07765.x Text en Copyright © 2011 Blackwell Publishing Ltd http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Hankins, Jessica V
Madsen, James A
Giles, David K
Childers, Brandon M
Klose, Karl E
Brodbelt, Jennifer S
Trent, M Stephen
Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition
title Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition
title_full Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition
title_fullStr Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition
title_full_unstemmed Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition
title_short Elucidation of a novel Vibrio cholerae lipid A secondary hydroxy-acyltransferase and its role in innate immune recognition
title_sort elucidation of a novel vibrio cholerae lipid a secondary hydroxy-acyltransferase and its role in innate immune recognition
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3178793/
https://www.ncbi.nlm.nih.gov/pubmed/21752109
http://dx.doi.org/10.1111/j.1365-2958.2011.07765.x
work_keys_str_mv AT hankinsjessicav elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition
AT madsenjamesa elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition
AT gilesdavidk elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition
AT childersbrandonm elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition
AT klosekarle elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition
AT brodbeltjennifers elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition
AT trentmstephen elucidationofanovelvibriocholeraelipidasecondaryhydroxyacyltransferaseanditsroleininnateimmunerecognition