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Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects

Clostridium perfringens enterotoxin (CPE) is thought to cause lethal enterotoxemia when absorbed from the intestinal lumen into the circulation. CPE action sequentially involves receptor-binding, oligomerization into a prepore, and pore formation. To explore the mechanistic basis by which CPE alters...

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Autores principales: Shrestha, Archana, Navarro, Mauricio A., Beingesser, Juliann, Armien, Anibal G., Uzal, Francisco A., McClane, Bruce A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599344/
https://www.ncbi.nlm.nih.gov/pubmed/36069435
http://dx.doi.org/10.1128/msphere.00276-22
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author Shrestha, Archana
Navarro, Mauricio A.
Beingesser, Juliann
Armien, Anibal G.
Uzal, Francisco A.
McClane, Bruce A.
author_facet Shrestha, Archana
Navarro, Mauricio A.
Beingesser, Juliann
Armien, Anibal G.
Uzal, Francisco A.
McClane, Bruce A.
author_sort Shrestha, Archana
collection PubMed
description Clostridium perfringens enterotoxin (CPE) is thought to cause lethal enterotoxemia when absorbed from the intestinal lumen into the circulation. CPE action sequentially involves receptor-binding, oligomerization into a prepore, and pore formation. To explore the mechanistic basis by which CPE alters permeability, this study tested the permeability effects of several recombinant CPE (rCPE) species: rCPE and rCPE(C186A) (which form pores), rC-CPE and rCPE(D48A) (which bind to receptors but cannot oligomerize), rCPE(C186A/F91C) (which binds and oligomerizes without pore formation), and rCPE(Y306A/L315A) (which has poor receptor-binding ability). On Caco-2 cells, i) only rCPE and rCPE(C186A) were cytotoxic; ii) rCPE and rCPE(C186A) affected transepithelial resistance (TEER) and 4 kDa fluorescent dextran (FD4) transit more quickly than binding-capable, but noncytotoxic, rCPE variants; whereas iii) rCPE(Y306A/L315A) did not affect TEER or FD4 transit. Using mouse intestinal loops, rCPE (but not noncytotoxic rC-CPE, rCPE(D48A) or rCPE(Y306A/L315A)) was lethal and caused intestinal histologic damage within 4 h. After 2 h of treatment, rCPE was more strongly absorbed into the serum than those noncytotoxic rCPE species but by 4 h rC-CPE and rCPE(D48A) became absorbed similarly as rCPE, while rCPE(Y306A/L315A) absorption remained low. This increased rC-CPE and rCPE(D48A) absorption from 2 to 4 h did not involve a general intestinal permeability increase because Evans Blue absorption from the intestines did not increase between 2 and 4 h of treatment with rC-CPE or rCPE(D48A). Collectively, these results indicate that CPE receptor binding is sufficient to slowly affect permeability, but CPE-induced cytotoxicity is necessary for rapid permeability changes and lethality. IMPORTANCE Clostridium perfringens enterotoxin (CPE) causes lethal enterotoxemia when absorbed from the intestines into the bloodstream. Testing recombinant CPE (rCPE) or rCPE variants impaired for various specific steps in CPE action showed that full CPE-induced cytotoxicity causes rapid Caco-2 monolayer permeability alterations, as well as enterotoxemic lethality and rapid CPE absorption in mouse small intestinal loops. However, receptor binding-capable, but noncytotoxic, rCPE variants did cause slow-developing in vitro and in vivo permeability effects. Absorption of binding-capable, noncytotoxic rCPE variants from the intestines did not correlate with general intestinal permeability alterations, suggesting that CPE binding can induce its own uptake. These findings highlight the importance of binding and, especially, cytotoxicity for CPE absorption during enterotoxemia and may assist development of permeability-altering rCPE variants for translational purposes.
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spelling pubmed-95993442022-10-27 Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects Shrestha, Archana Navarro, Mauricio A. Beingesser, Juliann Armien, Anibal G. Uzal, Francisco A. McClane, Bruce A. mSphere Research Article Clostridium perfringens enterotoxin (CPE) is thought to cause lethal enterotoxemia when absorbed from the intestinal lumen into the circulation. CPE action sequentially involves receptor-binding, oligomerization into a prepore, and pore formation. To explore the mechanistic basis by which CPE alters permeability, this study tested the permeability effects of several recombinant CPE (rCPE) species: rCPE and rCPE(C186A) (which form pores), rC-CPE and rCPE(D48A) (which bind to receptors but cannot oligomerize), rCPE(C186A/F91C) (which binds and oligomerizes without pore formation), and rCPE(Y306A/L315A) (which has poor receptor-binding ability). On Caco-2 cells, i) only rCPE and rCPE(C186A) were cytotoxic; ii) rCPE and rCPE(C186A) affected transepithelial resistance (TEER) and 4 kDa fluorescent dextran (FD4) transit more quickly than binding-capable, but noncytotoxic, rCPE variants; whereas iii) rCPE(Y306A/L315A) did not affect TEER or FD4 transit. Using mouse intestinal loops, rCPE (but not noncytotoxic rC-CPE, rCPE(D48A) or rCPE(Y306A/L315A)) was lethal and caused intestinal histologic damage within 4 h. After 2 h of treatment, rCPE was more strongly absorbed into the serum than those noncytotoxic rCPE species but by 4 h rC-CPE and rCPE(D48A) became absorbed similarly as rCPE, while rCPE(Y306A/L315A) absorption remained low. This increased rC-CPE and rCPE(D48A) absorption from 2 to 4 h did not involve a general intestinal permeability increase because Evans Blue absorption from the intestines did not increase between 2 and 4 h of treatment with rC-CPE or rCPE(D48A). Collectively, these results indicate that CPE receptor binding is sufficient to slowly affect permeability, but CPE-induced cytotoxicity is necessary for rapid permeability changes and lethality. IMPORTANCE Clostridium perfringens enterotoxin (CPE) causes lethal enterotoxemia when absorbed from the intestines into the bloodstream. Testing recombinant CPE (rCPE) or rCPE variants impaired for various specific steps in CPE action showed that full CPE-induced cytotoxicity causes rapid Caco-2 monolayer permeability alterations, as well as enterotoxemic lethality and rapid CPE absorption in mouse small intestinal loops. However, receptor binding-capable, but noncytotoxic, rCPE variants did cause slow-developing in vitro and in vivo permeability effects. Absorption of binding-capable, noncytotoxic rCPE variants from the intestines did not correlate with general intestinal permeability alterations, suggesting that CPE binding can induce its own uptake. These findings highlight the importance of binding and, especially, cytotoxicity for CPE absorption during enterotoxemia and may assist development of permeability-altering rCPE variants for translational purposes. American Society for Microbiology 2022-09-07 /pmc/articles/PMC9599344/ /pubmed/36069435 http://dx.doi.org/10.1128/msphere.00276-22 Text en Copyright © 2022 Shrestha et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Shrestha, Archana
Navarro, Mauricio A.
Beingesser, Juliann
Armien, Anibal G.
Uzal, Francisco A.
McClane, Bruce A.
Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects
title Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects
title_full Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects
title_fullStr Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects
title_full_unstemmed Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects
title_short Characterizing the Contributions of Various Clostridium perfringens Enterotoxin Properties to In Vivo and In Vitro Permeability Effects
title_sort characterizing the contributions of various clostridium perfringens enterotoxin properties to in vivo and in vitro permeability effects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599344/
https://www.ncbi.nlm.nih.gov/pubmed/36069435
http://dx.doi.org/10.1128/msphere.00276-22
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