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Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome

Schistosoma mekongi causes schistosomiasis in southeast Asia, against which praziquantel (PZQ) is the only treatment option. PZQ resistance has been reported, thus increasing the requirement to understand mechanism of PZQ. Herein, this study aimed to assess differences in proteome and phosphoproteom...

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Autores principales: Chienwichai, Peerut, Ampawong, Sumate, Adisakwattana, Poom, Thiangtrongjit, Tipparat, Limpanont, Yanin, Chusongsang, Phiraphol, Chusongsang, Yupa, Reamtong, Onrapak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7350297/
https://www.ncbi.nlm.nih.gov/pubmed/32471184
http://dx.doi.org/10.3390/pathogens9060417
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author Chienwichai, Peerut
Ampawong, Sumate
Adisakwattana, Poom
Thiangtrongjit, Tipparat
Limpanont, Yanin
Chusongsang, Phiraphol
Chusongsang, Yupa
Reamtong, Onrapak
author_facet Chienwichai, Peerut
Ampawong, Sumate
Adisakwattana, Poom
Thiangtrongjit, Tipparat
Limpanont, Yanin
Chusongsang, Phiraphol
Chusongsang, Yupa
Reamtong, Onrapak
author_sort Chienwichai, Peerut
collection PubMed
description Schistosoma mekongi causes schistosomiasis in southeast Asia, against which praziquantel (PZQ) is the only treatment option. PZQ resistance has been reported, thus increasing the requirement to understand mechanism of PZQ. Herein, this study aimed to assess differences in proteome and phosphoproteome of S. mekongi after PZQ treatment for elucidating its action. Furthermore, key kinases related to PZQ effects were predicted to identify alternative targets for novel drug development. Proteomes of S. mekongi were profiled after PZQ treatment at half maximal inhibitory concentration and compared with untreated worms. A total of 144 proteins were differentially expressed after treatment. In parallel, immunohistochemistry indicated a reduction of phosphorylation, with 43 phosphoproteins showing reduced phosphorylation, as identified by phosphoproteomic approach. Pathway analysis of mass spectrometric data showed that calcium homeostasis, worm antigen, and oxidative stress pathways were influenced by PZQ treatment. Interestingly, two novel mechanisms related to protein folding and proteolysis through endoplasmic reticulum-associated degradation pathways were indicated as a parasiticidal mechanism of PZQ. According to kinase–substrate predictions with bioinformatic tools, Src kinase was highlighted as the major kinase related to the alteration of phosphorylation by PZQ. Interfering with these pathways or applying Src kinase inhibitors could be alternative approaches for further antischistosomal drug development.
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spelling pubmed-73502972020-07-15 Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome Chienwichai, Peerut Ampawong, Sumate Adisakwattana, Poom Thiangtrongjit, Tipparat Limpanont, Yanin Chusongsang, Phiraphol Chusongsang, Yupa Reamtong, Onrapak Pathogens Article Schistosoma mekongi causes schistosomiasis in southeast Asia, against which praziquantel (PZQ) is the only treatment option. PZQ resistance has been reported, thus increasing the requirement to understand mechanism of PZQ. Herein, this study aimed to assess differences in proteome and phosphoproteome of S. mekongi after PZQ treatment for elucidating its action. Furthermore, key kinases related to PZQ effects were predicted to identify alternative targets for novel drug development. Proteomes of S. mekongi were profiled after PZQ treatment at half maximal inhibitory concentration and compared with untreated worms. A total of 144 proteins were differentially expressed after treatment. In parallel, immunohistochemistry indicated a reduction of phosphorylation, with 43 phosphoproteins showing reduced phosphorylation, as identified by phosphoproteomic approach. Pathway analysis of mass spectrometric data showed that calcium homeostasis, worm antigen, and oxidative stress pathways were influenced by PZQ treatment. Interestingly, two novel mechanisms related to protein folding and proteolysis through endoplasmic reticulum-associated degradation pathways were indicated as a parasiticidal mechanism of PZQ. According to kinase–substrate predictions with bioinformatic tools, Src kinase was highlighted as the major kinase related to the alteration of phosphorylation by PZQ. Interfering with these pathways or applying Src kinase inhibitors could be alternative approaches for further antischistosomal drug development. MDPI 2020-05-27 /pmc/articles/PMC7350297/ /pubmed/32471184 http://dx.doi.org/10.3390/pathogens9060417 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chienwichai, Peerut
Ampawong, Sumate
Adisakwattana, Poom
Thiangtrongjit, Tipparat
Limpanont, Yanin
Chusongsang, Phiraphol
Chusongsang, Yupa
Reamtong, Onrapak
Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome
title Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome
title_full Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome
title_fullStr Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome
title_full_unstemmed Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome
title_short Effect of Praziquantel on Schistosoma mekongi Proteome and Phosphoproteome
title_sort effect of praziquantel on schistosoma mekongi proteome and phosphoproteome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7350297/
https://www.ncbi.nlm.nih.gov/pubmed/32471184
http://dx.doi.org/10.3390/pathogens9060417
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