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Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies

Clostridium perfringens epsilon toxin (Etx) is a pore-forming toxin responsible for a severe and rapidly fatal enterotoxemia of ruminants. The toxin is classified as a category B bioterrorism agent by the U.S. Government Centres for Disease Control and Prevention (CDC), making work with recombinant...

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Autores principales: Bokori-Brown, Monika, Kokkinidou, Maria C, Savva, Christos G, Fernandes da Costa, Sérgio, Naylor, Claire E, Cole, Ambrose R, Moss, David S, Basak, Ajit K, Titball, Richard W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wiley Subscription Services, Inc., A Wiley Company 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3649266/
https://www.ncbi.nlm.nih.gov/pubmed/23504825
http://dx.doi.org/10.1002/pro.2250
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author Bokori-Brown, Monika
Kokkinidou, Maria C
Savva, Christos G
Fernandes da Costa, Sérgio
Naylor, Claire E
Cole, Ambrose R
Moss, David S
Basak, Ajit K
Titball, Richard W
author_facet Bokori-Brown, Monika
Kokkinidou, Maria C
Savva, Christos G
Fernandes da Costa, Sérgio
Naylor, Claire E
Cole, Ambrose R
Moss, David S
Basak, Ajit K
Titball, Richard W
author_sort Bokori-Brown, Monika
collection PubMed
description Clostridium perfringens epsilon toxin (Etx) is a pore-forming toxin responsible for a severe and rapidly fatal enterotoxemia of ruminants. The toxin is classified as a category B bioterrorism agent by the U.S. Government Centres for Disease Control and Prevention (CDC), making work with recombinant toxin difficult. To reduce the hazard posed by work with recombinant Etx, we have used a variant of Etx that contains a H149A mutation (Etx-H149A), previously reported to have reduced, but not abolished, toxicity. The three-dimensional structure of H149A prototoxin shows that the H149A mutation in domain III does not affect organisation of the putative receptor binding loops in domain I of the toxin. Surface exposed tyrosine residues in domain I of Etx-H149A (Y16, Y20, Y29, Y30, Y36 and Y196) were mutated to alanine and mutants Y30A and Y196A showed significantly reduced binding to MDCK.2 cells relative to Etx-H149A that correlated with their reduced cytotoxic activity. Thus, our study confirms the role of surface exposed tyrosine residues in domain I of Etx in binding to MDCK cells and the suitability of Etx-H149A for further receptor binding studies. In contrast, binding of all of the tyrosine mutants to ACHN cells was similar to that of Etx-H149A, suggesting that Etx can recognise different cell surface receptors. In support of this, the crystal structure of Etx-H149A identified a glycan (β-octyl-glucoside) binding site in domain III of Etx-H149A, which may be a second receptor binding site. These findings have important implications for developing strategies designed to neutralise toxin activity.
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spelling pubmed-36492662013-06-06 Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies Bokori-Brown, Monika Kokkinidou, Maria C Savva, Christos G Fernandes da Costa, Sérgio Naylor, Claire E Cole, Ambrose R Moss, David S Basak, Ajit K Titball, Richard W Protein Sci Articles Clostridium perfringens epsilon toxin (Etx) is a pore-forming toxin responsible for a severe and rapidly fatal enterotoxemia of ruminants. The toxin is classified as a category B bioterrorism agent by the U.S. Government Centres for Disease Control and Prevention (CDC), making work with recombinant toxin difficult. To reduce the hazard posed by work with recombinant Etx, we have used a variant of Etx that contains a H149A mutation (Etx-H149A), previously reported to have reduced, but not abolished, toxicity. The three-dimensional structure of H149A prototoxin shows that the H149A mutation in domain III does not affect organisation of the putative receptor binding loops in domain I of the toxin. Surface exposed tyrosine residues in domain I of Etx-H149A (Y16, Y20, Y29, Y30, Y36 and Y196) were mutated to alanine and mutants Y30A and Y196A showed significantly reduced binding to MDCK.2 cells relative to Etx-H149A that correlated with their reduced cytotoxic activity. Thus, our study confirms the role of surface exposed tyrosine residues in domain I of Etx in binding to MDCK cells and the suitability of Etx-H149A for further receptor binding studies. In contrast, binding of all of the tyrosine mutants to ACHN cells was similar to that of Etx-H149A, suggesting that Etx can recognise different cell surface receptors. In support of this, the crystal structure of Etx-H149A identified a glycan (β-octyl-glucoside) binding site in domain III of Etx-H149A, which may be a second receptor binding site. These findings have important implications for developing strategies designed to neutralise toxin activity. Wiley Subscription Services, Inc., A Wiley Company 2013-05 2013-03-18 /pmc/articles/PMC3649266/ /pubmed/23504825 http://dx.doi.org/10.1002/pro.2250 Text en Copyright © 2013 The Protein Society
spellingShingle Articles
Bokori-Brown, Monika
Kokkinidou, Maria C
Savva, Christos G
Fernandes da Costa, Sérgio
Naylor, Claire E
Cole, Ambrose R
Moss, David S
Basak, Ajit K
Titball, Richard W
Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies
title Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies
title_full Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies
title_fullStr Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies
title_full_unstemmed Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies
title_short Clostridium perfringens epsilon toxin H149A mutant as a platform for receptor binding studies
title_sort clostridium perfringens epsilon toxin h149a mutant as a platform for receptor binding studies
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3649266/
https://www.ncbi.nlm.nih.gov/pubmed/23504825
http://dx.doi.org/10.1002/pro.2250
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