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The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components

Hemolytic uremic syndrome (eHUS) is a severe complication of human infections with Shiga toxins (Stxs)‐producing Escherichia coli. A key step in the pathogenesis of eHUS is the interaction of Stxs with blood components before the targeting of renal endothelial cells. Here, we show that a single prot...

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Autores principales: Brigotti, Maurizio, Orth‐Höller, Dorothea, Carnicelli, Domenica, Porcellini, Elisa, Galassi, Elisabetta, Tazzari, Pier Luigi, Ricci, Francesca, Manoli, Francesco, Manet, Ilse, Talasz, Heribert, Lindner, Herbert H., Speth, Cornelia, Erbeznik, Thomas, Fuchs, Stefan, Posch, Wilfried, Chatterjee, Sneha, Würzner, Reinhard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6492301/
https://www.ncbi.nlm.nih.gov/pubmed/30578712
http://dx.doi.org/10.1111/cmi.13000
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author Brigotti, Maurizio
Orth‐Höller, Dorothea
Carnicelli, Domenica
Porcellini, Elisa
Galassi, Elisabetta
Tazzari, Pier Luigi
Ricci, Francesca
Manoli, Francesco
Manet, Ilse
Talasz, Heribert
Lindner, Herbert H.
Speth, Cornelia
Erbeznik, Thomas
Fuchs, Stefan
Posch, Wilfried
Chatterjee, Sneha
Würzner, Reinhard
author_facet Brigotti, Maurizio
Orth‐Höller, Dorothea
Carnicelli, Domenica
Porcellini, Elisa
Galassi, Elisabetta
Tazzari, Pier Luigi
Ricci, Francesca
Manoli, Francesco
Manet, Ilse
Talasz, Heribert
Lindner, Herbert H.
Speth, Cornelia
Erbeznik, Thomas
Fuchs, Stefan
Posch, Wilfried
Chatterjee, Sneha
Würzner, Reinhard
author_sort Brigotti, Maurizio
collection PubMed
description Hemolytic uremic syndrome (eHUS) is a severe complication of human infections with Shiga toxins (Stxs)‐producing Escherichia coli. A key step in the pathogenesis of eHUS is the interaction of Stxs with blood components before the targeting of renal endothelial cells. Here, we show that a single proteolytic cleavage in the Stx2a A‐subunit, resulting into two fragments (A1 and A2) linked by a disulfide bridge (cleaved Stx2a), dictates different binding abilities. Uncleaved Stx2a was confirmed to bind to human neutrophils and to trigger leukocyte/platelet aggregate formation, whereas cleaved Stx2a was ineffective. Conversely, binding of complement factor H was confirmed for cleaved Stx2a and not for uncleaved Stx2a. It is worth noting that uncleaved and cleaved Stx2a showed no differences in cytotoxicity for Vero cells or Raji cells, structural conformation, and contaminating endotoxin. These results have been obtained by comparing two Stx2a batches, purified in different laboratories by using different protocols, termed Stx2a(cl; cleaved toxin, Innsbruck) and Stx2a(uncl; uncleaved toxin, Bologna). Stx2a(uncl) behaved as Stx2a(cl) after mild trypsin treatment. In this light, previous controversial results obtained with purified Stx2a has to be critically re‐evaluated; furthermore, characterisation of the structure of circulating Stx2a is mandatory to understand eHUS‐pathogenesis and to develop therapeutic approaches.
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spelling pubmed-64923012019-05-07 The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components Brigotti, Maurizio Orth‐Höller, Dorothea Carnicelli, Domenica Porcellini, Elisa Galassi, Elisabetta Tazzari, Pier Luigi Ricci, Francesca Manoli, Francesco Manet, Ilse Talasz, Heribert Lindner, Herbert H. Speth, Cornelia Erbeznik, Thomas Fuchs, Stefan Posch, Wilfried Chatterjee, Sneha Würzner, Reinhard Cell Microbiol Research Articles Hemolytic uremic syndrome (eHUS) is a severe complication of human infections with Shiga toxins (Stxs)‐producing Escherichia coli. A key step in the pathogenesis of eHUS is the interaction of Stxs with blood components before the targeting of renal endothelial cells. Here, we show that a single proteolytic cleavage in the Stx2a A‐subunit, resulting into two fragments (A1 and A2) linked by a disulfide bridge (cleaved Stx2a), dictates different binding abilities. Uncleaved Stx2a was confirmed to bind to human neutrophils and to trigger leukocyte/platelet aggregate formation, whereas cleaved Stx2a was ineffective. Conversely, binding of complement factor H was confirmed for cleaved Stx2a and not for uncleaved Stx2a. It is worth noting that uncleaved and cleaved Stx2a showed no differences in cytotoxicity for Vero cells or Raji cells, structural conformation, and contaminating endotoxin. These results have been obtained by comparing two Stx2a batches, purified in different laboratories by using different protocols, termed Stx2a(cl; cleaved toxin, Innsbruck) and Stx2a(uncl; uncleaved toxin, Bologna). Stx2a(uncl) behaved as Stx2a(cl) after mild trypsin treatment. In this light, previous controversial results obtained with purified Stx2a has to be critically re‐evaluated; furthermore, characterisation of the structure of circulating Stx2a is mandatory to understand eHUS‐pathogenesis and to develop therapeutic approaches. John Wiley and Sons Inc. 2019-01-18 2019-05 /pmc/articles/PMC6492301/ /pubmed/30578712 http://dx.doi.org/10.1111/cmi.13000 Text en © 2018 The Authors Cellular Microbiology Published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Brigotti, Maurizio
Orth‐Höller, Dorothea
Carnicelli, Domenica
Porcellini, Elisa
Galassi, Elisabetta
Tazzari, Pier Luigi
Ricci, Francesca
Manoli, Francesco
Manet, Ilse
Talasz, Heribert
Lindner, Herbert H.
Speth, Cornelia
Erbeznik, Thomas
Fuchs, Stefan
Posch, Wilfried
Chatterjee, Sneha
Würzner, Reinhard
The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components
title The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components
title_full The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components
title_fullStr The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components
title_full_unstemmed The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components
title_short The structure of the Shiga toxin 2a A‐subunit dictates the interactions of the toxin with blood components
title_sort structure of the shiga toxin 2a a‐subunit dictates the interactions of the toxin with blood components
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6492301/
https://www.ncbi.nlm.nih.gov/pubmed/30578712
http://dx.doi.org/10.1111/cmi.13000
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