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Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida

Haemorrhagic septicaemia is mainly caused by an opportunistic pathogen, Pasteurella multocida, a major threat to the livestock dependent economies. The main endotoxins are lipopolysaccharides. The lipid A, a key pathogenic part of lipopolysaccharides, anchors it into the bacterial cell membrane. Hen...

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Autores principales: Tawab, Abdul, Akbar, Noor, Hasssan, Mujtaba, Habib, Fazale, Ali, Aamir, Rahman, Moazur, Jabbar, Abdul, Rauf, Waqar, Iqbal, Mazhar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056370/
https://www.ncbi.nlm.nih.gov/pubmed/35516050
http://dx.doi.org/10.1039/d0ra05463a
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author Tawab, Abdul
Akbar, Noor
Hasssan, Mujtaba
Habib, Fazale
Ali, Aamir
Rahman, Moazur
Jabbar, Abdul
Rauf, Waqar
Iqbal, Mazhar
author_facet Tawab, Abdul
Akbar, Noor
Hasssan, Mujtaba
Habib, Fazale
Ali, Aamir
Rahman, Moazur
Jabbar, Abdul
Rauf, Waqar
Iqbal, Mazhar
author_sort Tawab, Abdul
collection PubMed
description Haemorrhagic septicaemia is mainly caused by an opportunistic pathogen, Pasteurella multocida, a major threat to the livestock dependent economies. The main endotoxins are lipopolysaccharides. The lipid A, a key pathogenic part of lipopolysaccharides, anchors it into the bacterial cell membrane. Hence, profiling of the lipid A is important to understand toxicity of this pathogen. Despite a significant progress made on glycan analyses of core regions of lipopolysaccharides from various P. multocida strains, the structure of lipid A has not been reported yet. The lipid A of P. multocida type B:2 was analyzed using ESI-MS/MS to identify the acylation patterns, number and length of various acyl fatty acids, phosphorylation level and lipid A modifications. The MS(n) data revealed the existence of multiple lipid A variants, i.e. mono and bisphosphorylated hepta-, hexa-, penta- and tetra-acylated structures, decorated with varied levels of 4-amino-4-deoxy-l-arabinose (Ara4N) on C-1 and/or C-4′ phosphate groups of proximal and distal glucosamine lipid A backbone. The detailed mass spectrometric analyses revealed that even within the same class, lipid A exhibits several sub-variant structures. A primary and secondary myristoylation at C-2, C-3, C-2′ and C-3′ was observed in all variants except hepta-acylated lipid A that carried a secondary palmitate at C-2 position. The lipid A profiling described herein, may contribute in exploring the mechanisms involved in endotoxicity of P. multocida type B:2 in haemorrhagic septicaemia disease.
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spelling pubmed-90563702022-05-04 Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida Tawab, Abdul Akbar, Noor Hasssan, Mujtaba Habib, Fazale Ali, Aamir Rahman, Moazur Jabbar, Abdul Rauf, Waqar Iqbal, Mazhar RSC Adv Chemistry Haemorrhagic septicaemia is mainly caused by an opportunistic pathogen, Pasteurella multocida, a major threat to the livestock dependent economies. The main endotoxins are lipopolysaccharides. The lipid A, a key pathogenic part of lipopolysaccharides, anchors it into the bacterial cell membrane. Hence, profiling of the lipid A is important to understand toxicity of this pathogen. Despite a significant progress made on glycan analyses of core regions of lipopolysaccharides from various P. multocida strains, the structure of lipid A has not been reported yet. The lipid A of P. multocida type B:2 was analyzed using ESI-MS/MS to identify the acylation patterns, number and length of various acyl fatty acids, phosphorylation level and lipid A modifications. The MS(n) data revealed the existence of multiple lipid A variants, i.e. mono and bisphosphorylated hepta-, hexa-, penta- and tetra-acylated structures, decorated with varied levels of 4-amino-4-deoxy-l-arabinose (Ara4N) on C-1 and/or C-4′ phosphate groups of proximal and distal glucosamine lipid A backbone. The detailed mass spectrometric analyses revealed that even within the same class, lipid A exhibits several sub-variant structures. A primary and secondary myristoylation at C-2, C-3, C-2′ and C-3′ was observed in all variants except hepta-acylated lipid A that carried a secondary palmitate at C-2 position. The lipid A profiling described herein, may contribute in exploring the mechanisms involved in endotoxicity of P. multocida type B:2 in haemorrhagic septicaemia disease. The Royal Society of Chemistry 2020-08-20 /pmc/articles/PMC9056370/ /pubmed/35516050 http://dx.doi.org/10.1039/d0ra05463a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Tawab, Abdul
Akbar, Noor
Hasssan, Mujtaba
Habib, Fazale
Ali, Aamir
Rahman, Moazur
Jabbar, Abdul
Rauf, Waqar
Iqbal, Mazhar
Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida
title Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida
title_full Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida
title_fullStr Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida
title_full_unstemmed Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida
title_short Mass spectrometric analysis of lipid A obtained from the lipopolysaccharide of Pasteurella multocida
title_sort mass spectrometric analysis of lipid a obtained from the lipopolysaccharide of pasteurella multocida
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056370/
https://www.ncbi.nlm.nih.gov/pubmed/35516050
http://dx.doi.org/10.1039/d0ra05463a
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