Cargando…

Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase

Giardia duodenalis infections are among the most common causes of waterborne diarrhoeal disease worldwide. At the height of infection, G. duodenalis trophozoites induce multiple pathophysiological processes within intestinal epithelial cells that contribute to the development of diarrhoeal disease....

Descripción completa

Detalles Bibliográficos
Autores principales: Bhargava, Amol, Cotton, James A., Dixon, Brent R., Gedamu, Lashitew, Yates, Robin M., Buret, Andre G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4559405/
https://www.ncbi.nlm.nih.gov/pubmed/26334299
http://dx.doi.org/10.1371/journal.pone.0136102
_version_ 1782388771045507072
author Bhargava, Amol
Cotton, James A.
Dixon, Brent R.
Gedamu, Lashitew
Yates, Robin M.
Buret, Andre G.
author_facet Bhargava, Amol
Cotton, James A.
Dixon, Brent R.
Gedamu, Lashitew
Yates, Robin M.
Buret, Andre G.
author_sort Bhargava, Amol
collection PubMed
description Giardia duodenalis infections are among the most common causes of waterborne diarrhoeal disease worldwide. At the height of infection, G. duodenalis trophozoites induce multiple pathophysiological processes within intestinal epithelial cells that contribute to the development of diarrhoeal disease. To date, our understanding of pathophysiological processes in giardiasis remains incompletely understood. The present study reveals a previously unappreciated role for G. duodenalis cathepsin cysteine proteases in intestinal epithelial pathophysiological processes that occur during giardiasis. Experiments first established that Giardia trophozoites indeed produce cathepsin B and L in strain-dependent fashion. Co-incubation of G. duodenalis with human enterocytes enhanced cathepsin production by Assemblage A (NF and S2 isolates) trophozoites, but not when epithelial cells were exposed to Assemblage B (GSM isolate) trophozoites. Direct contact between G. duodenalis parasites and human intestinal epithelial monolayers resulted in the degradation and redistribution of the intestinal epithelial cytoskeletal protein villin; these effects were abolished when parasite cathepsin cysteine proteases were inhibited. Interestingly, inhibition of parasite proteases did not prevent degradation of the intestinal tight junction-associated protein zonula occludens 1 (ZO-1), suggesting that G. duodenalis induces multiple pathophysiological processes within intestinal epithelial cells. Finally, this study demonstrates that G. duodenalis-mediated disruption of villin is, at least, in part dependent on activation of myosin light chain kinase (MLCK). Taken together, this study indicates a novel role for parasite cathepsin cysteine proteases in the pathophysiology of G. duodenalis infections.
format Online
Article
Text
id pubmed-4559405
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-45594052015-09-10 Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase Bhargava, Amol Cotton, James A. Dixon, Brent R. Gedamu, Lashitew Yates, Robin M. Buret, Andre G. PLoS One Research Article Giardia duodenalis infections are among the most common causes of waterborne diarrhoeal disease worldwide. At the height of infection, G. duodenalis trophozoites induce multiple pathophysiological processes within intestinal epithelial cells that contribute to the development of diarrhoeal disease. To date, our understanding of pathophysiological processes in giardiasis remains incompletely understood. The present study reveals a previously unappreciated role for G. duodenalis cathepsin cysteine proteases in intestinal epithelial pathophysiological processes that occur during giardiasis. Experiments first established that Giardia trophozoites indeed produce cathepsin B and L in strain-dependent fashion. Co-incubation of G. duodenalis with human enterocytes enhanced cathepsin production by Assemblage A (NF and S2 isolates) trophozoites, but not when epithelial cells were exposed to Assemblage B (GSM isolate) trophozoites. Direct contact between G. duodenalis parasites and human intestinal epithelial monolayers resulted in the degradation and redistribution of the intestinal epithelial cytoskeletal protein villin; these effects were abolished when parasite cathepsin cysteine proteases were inhibited. Interestingly, inhibition of parasite proteases did not prevent degradation of the intestinal tight junction-associated protein zonula occludens 1 (ZO-1), suggesting that G. duodenalis induces multiple pathophysiological processes within intestinal epithelial cells. Finally, this study demonstrates that G. duodenalis-mediated disruption of villin is, at least, in part dependent on activation of myosin light chain kinase (MLCK). Taken together, this study indicates a novel role for parasite cathepsin cysteine proteases in the pathophysiology of G. duodenalis infections. Public Library of Science 2015-09-03 /pmc/articles/PMC4559405/ /pubmed/26334299 http://dx.doi.org/10.1371/journal.pone.0136102 Text en © 2015 Bhargava et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Bhargava, Amol
Cotton, James A.
Dixon, Brent R.
Gedamu, Lashitew
Yates, Robin M.
Buret, Andre G.
Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase
title Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase
title_full Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase
title_fullStr Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase
title_full_unstemmed Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase
title_short Giardia duodenalis Surface Cysteine Proteases Induce Cleavage of the Intestinal Epithelial Cytoskeletal Protein Villin via Myosin Light Chain Kinase
title_sort giardia duodenalis surface cysteine proteases induce cleavage of the intestinal epithelial cytoskeletal protein villin via myosin light chain kinase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4559405/
https://www.ncbi.nlm.nih.gov/pubmed/26334299
http://dx.doi.org/10.1371/journal.pone.0136102
work_keys_str_mv AT bhargavaamol giardiaduodenalissurfacecysteineproteasesinducecleavageoftheintestinalepithelialcytoskeletalproteinvillinviamyosinlightchainkinase
AT cottonjamesa giardiaduodenalissurfacecysteineproteasesinducecleavageoftheintestinalepithelialcytoskeletalproteinvillinviamyosinlightchainkinase
AT dixonbrentr giardiaduodenalissurfacecysteineproteasesinducecleavageoftheintestinalepithelialcytoskeletalproteinvillinviamyosinlightchainkinase
AT gedamulashitew giardiaduodenalissurfacecysteineproteasesinducecleavageoftheintestinalepithelialcytoskeletalproteinvillinviamyosinlightchainkinase
AT yatesrobinm giardiaduodenalissurfacecysteineproteasesinducecleavageoftheintestinalepithelialcytoskeletalproteinvillinviamyosinlightchainkinase
AT buretandreg giardiaduodenalissurfacecysteineproteasesinducecleavageoftheintestinalepithelialcytoskeletalproteinvillinviamyosinlightchainkinase