Cargando…

Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri

Lipopolysaccharide (LPS), a surface polymer of Gram-negative bacteria, helps bacteria survive in different environments and acts as a virulence determinant of host infection. The O-antigen (Oag) component of LPS exhibits a modal chain-length distribution that is controlled by polysaccharide co-polym...

Descripción completa

Detalles Bibliográficos
Autores principales: Chang, Chiung-Wen, Tran, Elizabeth N. H., Ericsson, Daniel J., Casey, Lachlan W., Lonhienne, Thierry, Benning, Friederike, Morona, Renato, Kobe, Bostjan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4574919/
https://www.ncbi.nlm.nih.gov/pubmed/26378781
http://dx.doi.org/10.1371/journal.pone.0138266
_version_ 1782390689740357632
author Chang, Chiung-Wen
Tran, Elizabeth N. H.
Ericsson, Daniel J.
Casey, Lachlan W.
Lonhienne, Thierry
Benning, Friederike
Morona, Renato
Kobe, Bostjan
author_facet Chang, Chiung-Wen
Tran, Elizabeth N. H.
Ericsson, Daniel J.
Casey, Lachlan W.
Lonhienne, Thierry
Benning, Friederike
Morona, Renato
Kobe, Bostjan
author_sort Chang, Chiung-Wen
collection PubMed
description Lipopolysaccharide (LPS), a surface polymer of Gram-negative bacteria, helps bacteria survive in different environments and acts as a virulence determinant of host infection. The O-antigen (Oag) component of LPS exhibits a modal chain-length distribution that is controlled by polysaccharide co-polymerases (PCPs). The molecular basis of the regulation of Oag chain-lengths remains unclear, despite extensive mutagenesis and structural studies of PCPs from Escherichia coli and Shigella. Here, we identified a single mutation (A107P) of the Shigella flexneri WzzB(SF), by a random mutagenesis approach, that causes a shortened Oag chain-length distribution in bacteria. We determined the crystal structures of the periplasmic domains of wild-type WzzB(SF) and the A107P mutant. Both structures form a highly similar open trimeric assembly in the crystals, and show a similar tendency to self-associate in solution. Binding studies by bio-layer interferometry reveal cooperative binding of very short (VS)-core-plus-O-antigen polysaccharide (COPS) to the periplasmic domains of both proteins, but with decreased affinity for the A107P mutant. Our studies reveal that subtle and localized structural differences in PCPs can have dramatic effects on LPS chain-length distribution in bacteria, for example by altering the affinity for the substrate, which supports the role of the structure of the growing Oag polymer in this process.
format Online
Article
Text
id pubmed-4574919
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-45749192015-09-25 Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri Chang, Chiung-Wen Tran, Elizabeth N. H. Ericsson, Daniel J. Casey, Lachlan W. Lonhienne, Thierry Benning, Friederike Morona, Renato Kobe, Bostjan PLoS One Research Article Lipopolysaccharide (LPS), a surface polymer of Gram-negative bacteria, helps bacteria survive in different environments and acts as a virulence determinant of host infection. The O-antigen (Oag) component of LPS exhibits a modal chain-length distribution that is controlled by polysaccharide co-polymerases (PCPs). The molecular basis of the regulation of Oag chain-lengths remains unclear, despite extensive mutagenesis and structural studies of PCPs from Escherichia coli and Shigella. Here, we identified a single mutation (A107P) of the Shigella flexneri WzzB(SF), by a random mutagenesis approach, that causes a shortened Oag chain-length distribution in bacteria. We determined the crystal structures of the periplasmic domains of wild-type WzzB(SF) and the A107P mutant. Both structures form a highly similar open trimeric assembly in the crystals, and show a similar tendency to self-associate in solution. Binding studies by bio-layer interferometry reveal cooperative binding of very short (VS)-core-plus-O-antigen polysaccharide (COPS) to the periplasmic domains of both proteins, but with decreased affinity for the A107P mutant. Our studies reveal that subtle and localized structural differences in PCPs can have dramatic effects on LPS chain-length distribution in bacteria, for example by altering the affinity for the substrate, which supports the role of the structure of the growing Oag polymer in this process. Public Library of Science 2015-09-17 /pmc/articles/PMC4574919/ /pubmed/26378781 http://dx.doi.org/10.1371/journal.pone.0138266 Text en © 2015 Chang 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
Chang, Chiung-Wen
Tran, Elizabeth N. H.
Ericsson, Daniel J.
Casey, Lachlan W.
Lonhienne, Thierry
Benning, Friederike
Morona, Renato
Kobe, Bostjan
Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri
title Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri
title_full Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri
title_fullStr Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri
title_full_unstemmed Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri
title_short Structural and Biochemical Analysis of a Single Amino-Acid Mutant of WzzB(SF) That Alters Lipopolysaccharide O-Antigen Chain Length in Shigella flexneri
title_sort structural and biochemical analysis of a single amino-acid mutant of wzzb(sf) that alters lipopolysaccharide o-antigen chain length in shigella flexneri
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4574919/
https://www.ncbi.nlm.nih.gov/pubmed/26378781
http://dx.doi.org/10.1371/journal.pone.0138266
work_keys_str_mv AT changchiungwen structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT tranelizabethnh structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT ericssondanielj structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT caseylachlanw structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT lonhiennethierry structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT benningfriederike structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT moronarenato structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri
AT kobebostjan structuralandbiochemicalanalysisofasingleaminoacidmutantofwzzbsfthatalterslipopolysaccharideoantigenchainlengthinshigellaflexneri