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A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification

Enterobacterial common antigen (ECA) is a conserved antigen expressed by enterobacteria. It is built by trisaccharide repeating units: →3)-α-D-Fucp4NAc-(1→4)-β-D-ManpNAcA-(1→4)-α-D-GlcpNAc-(1→ and occurs in three forms: as surface-bound linear polysaccharides linked to a phosphoglyceride (ECA(PG)) o...

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Autores principales: Gozdziewicz, Tomasz K, Maciejewska, Anna, Tsybulska, Alona, Lugowski, Czeslaw, Lukasiewicz, Jolanta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828235/
https://www.ncbi.nlm.nih.gov/pubmed/33445776
http://dx.doi.org/10.3390/ijms22020701
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author Gozdziewicz, Tomasz K
Maciejewska, Anna
Tsybulska, Alona
Lugowski, Czeslaw
Lukasiewicz, Jolanta
author_facet Gozdziewicz, Tomasz K
Maciejewska, Anna
Tsybulska, Alona
Lugowski, Czeslaw
Lukasiewicz, Jolanta
author_sort Gozdziewicz, Tomasz K
collection PubMed
description Enterobacterial common antigen (ECA) is a conserved antigen expressed by enterobacteria. It is built by trisaccharide repeating units: →3)-α-D-Fucp4NAc-(1→4)-β-D-ManpNAcA-(1→4)-α-D-GlcpNAc-(1→ and occurs in three forms: as surface-bound linear polysaccharides linked to a phosphoglyceride (ECA(PG)) or lipopolysaccharide − endotoxin (ECA(LPS)), and cyclic form (ECA(CYC)). ECA maintains, outer membrane integrity, immunogenicity, and viability of enterobacteria. A supernatant obtained after LPS ultracentrifugation was reported as a source for ECA isolation, but it has never been assessed for detailed composition besides ECA(CYC). We used mild acid hydrolysis and gel filtration, or zwitterionic-hydrophilic interaction liquid (ZIC(®)HILIC) chromatography combined with mass spectrometry for purification, fractionation, and structural analysis of rough Shigella sonnei and Escherichia coli R1 and K12 crude LPS preparations. Presented work is the first report concerning complex characteristic of all ECA forms present in LPS-derived supernatants. We demonstrated high heterogeneity of the supernatant-derived ECA that contaminate LPS purified by ultracentrifugation. Not only previously reported O-acetylated tetrameric, pentameric, and hexameric ECA(CYC) have been identified, but also devoid of lipid moiety linear ECA built from 7 to 11 repeating units. Described results were common for all selected strains. The origin of linear ECA is discussed against the current knowledge about ECA(PG) and ECA(LPS).
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spelling pubmed-78282352021-01-25 A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification Gozdziewicz, Tomasz K Maciejewska, Anna Tsybulska, Alona Lugowski, Czeslaw Lukasiewicz, Jolanta Int J Mol Sci Article Enterobacterial common antigen (ECA) is a conserved antigen expressed by enterobacteria. It is built by trisaccharide repeating units: →3)-α-D-Fucp4NAc-(1→4)-β-D-ManpNAcA-(1→4)-α-D-GlcpNAc-(1→ and occurs in three forms: as surface-bound linear polysaccharides linked to a phosphoglyceride (ECA(PG)) or lipopolysaccharide − endotoxin (ECA(LPS)), and cyclic form (ECA(CYC)). ECA maintains, outer membrane integrity, immunogenicity, and viability of enterobacteria. A supernatant obtained after LPS ultracentrifugation was reported as a source for ECA isolation, but it has never been assessed for detailed composition besides ECA(CYC). We used mild acid hydrolysis and gel filtration, or zwitterionic-hydrophilic interaction liquid (ZIC(®)HILIC) chromatography combined with mass spectrometry for purification, fractionation, and structural analysis of rough Shigella sonnei and Escherichia coli R1 and K12 crude LPS preparations. Presented work is the first report concerning complex characteristic of all ECA forms present in LPS-derived supernatants. We demonstrated high heterogeneity of the supernatant-derived ECA that contaminate LPS purified by ultracentrifugation. Not only previously reported O-acetylated tetrameric, pentameric, and hexameric ECA(CYC) have been identified, but also devoid of lipid moiety linear ECA built from 7 to 11 repeating units. Described results were common for all selected strains. The origin of linear ECA is discussed against the current knowledge about ECA(PG) and ECA(LPS). MDPI 2021-01-12 /pmc/articles/PMC7828235/ /pubmed/33445776 http://dx.doi.org/10.3390/ijms22020701 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gozdziewicz, Tomasz K
Maciejewska, Anna
Tsybulska, Alona
Lugowski, Czeslaw
Lukasiewicz, Jolanta
A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification
title A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification
title_full A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification
title_fullStr A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification
title_full_unstemmed A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification
title_short A New Look at the Enterobacterial Common Antigen Forms Obtained during Rough Lipopolysaccharides Purification
title_sort new look at the enterobacterial common antigen forms obtained during rough lipopolysaccharides purification
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828235/
https://www.ncbi.nlm.nih.gov/pubmed/33445776
http://dx.doi.org/10.3390/ijms22020701
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