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Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways

The molecular repertoire of Trypanosoma cruzi effects its virulence and impacts the clinical course of the resulting Chagas disease. This study aimed to determine the mechanism underlying the pathogenicity of T. cruzi. Two T. cruzi cell lines (C8C3hvir and C8C3lvir), obtained from the clone H510 C8C...

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Autores principales: San Francisco, Juan, Astudillo, Constanza, Vega, José Luis, Catalán, Alejandro, Gutiérrez, Bessy, Araya, Jorge E, Zailberger, Anibal, Marina, Anabel, García, Carlos, Sanchez, Nuria, Osuna, Antonio, Vilchez, Susana, Ramírez, Marcel I, Macedo, Janaina, Feijoli, Verónica Santiago, Palmisano, Giuseppe, González, Jorge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601562/
https://www.ncbi.nlm.nih.gov/pubmed/36284085
http://dx.doi.org/10.1080/21505594.2022.2132776
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author San Francisco, Juan
Astudillo, Constanza
Vega, José Luis
Catalán, Alejandro
Gutiérrez, Bessy
Araya, Jorge E
Zailberger, Anibal
Marina, Anabel
García, Carlos
Sanchez, Nuria
Osuna, Antonio
Vilchez, Susana
Ramírez, Marcel I
Macedo, Janaina
Feijoli, Verónica Santiago
Palmisano, Giuseppe
González, Jorge
author_facet San Francisco, Juan
Astudillo, Constanza
Vega, José Luis
Catalán, Alejandro
Gutiérrez, Bessy
Araya, Jorge E
Zailberger, Anibal
Marina, Anabel
García, Carlos
Sanchez, Nuria
Osuna, Antonio
Vilchez, Susana
Ramírez, Marcel I
Macedo, Janaina
Feijoli, Verónica Santiago
Palmisano, Giuseppe
González, Jorge
author_sort San Francisco, Juan
collection PubMed
description The molecular repertoire of Trypanosoma cruzi effects its virulence and impacts the clinical course of the resulting Chagas disease. This study aimed to determine the mechanism underlying the pathogenicity of T. cruzi. Two T. cruzi cell lines (C8C3hvir and C8C3lvir), obtained from the clone H510 C8C3 and exhibiting different virulence phenotypes, were used to evaluate the parasite’s infectivity in mice. The organ parasite load was analysed by qPCR. The proteomes of both T. cruzi cell lines were compared using nLC-MS/MS. Cruzipain (Czp), complement regulatory protein (CRP), trans-sialidase (TS), Tc-85, and sialylated epitope expression levels were evaluated by immunoblotting. High-virulence C8C3hvir was highly infectious in mice and demonstrated three to five times higher infectivity in mouse myocardial cells than low-virulence C8C3lvir. qPCR revealed higher parasite loads in organs of acute as well as chronically C8C3hvir-infected mice than in those of C8C3lvir-infected mice. Comparative quantitative proteomics revealed that 390 of 1547 identified proteins were differentially regulated in C8C3hvir with respect to C8C3lvir. Amongst these, 174 proteins were upregulated in C8C3hvir and 216 were downregulated in C8C3lvir. The upregulated proteins in C8C3hvir were associated with the tricarboxylic acid cycle, ribosomal proteins, and redoxins. Higher levels of Czp, CRP, TS, Tc-85, and sialylated epitopes were expressed in C8C3hvir than in C8C3lvir. Thus, T. cruzi virulence may be related to virulence factor expression as well as upregulation of bioenergetic and biosynthetic pathways proteins.
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spelling pubmed-96015622022-10-27 Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways San Francisco, Juan Astudillo, Constanza Vega, José Luis Catalán, Alejandro Gutiérrez, Bessy Araya, Jorge E Zailberger, Anibal Marina, Anabel García, Carlos Sanchez, Nuria Osuna, Antonio Vilchez, Susana Ramírez, Marcel I Macedo, Janaina Feijoli, Verónica Santiago Palmisano, Giuseppe González, Jorge Virulence Research Paper The molecular repertoire of Trypanosoma cruzi effects its virulence and impacts the clinical course of the resulting Chagas disease. This study aimed to determine the mechanism underlying the pathogenicity of T. cruzi. Two T. cruzi cell lines (C8C3hvir and C8C3lvir), obtained from the clone H510 C8C3 and exhibiting different virulence phenotypes, were used to evaluate the parasite’s infectivity in mice. The organ parasite load was analysed by qPCR. The proteomes of both T. cruzi cell lines were compared using nLC-MS/MS. Cruzipain (Czp), complement regulatory protein (CRP), trans-sialidase (TS), Tc-85, and sialylated epitope expression levels were evaluated by immunoblotting. High-virulence C8C3hvir was highly infectious in mice and demonstrated three to five times higher infectivity in mouse myocardial cells than low-virulence C8C3lvir. qPCR revealed higher parasite loads in organs of acute as well as chronically C8C3hvir-infected mice than in those of C8C3lvir-infected mice. Comparative quantitative proteomics revealed that 390 of 1547 identified proteins were differentially regulated in C8C3hvir with respect to C8C3lvir. Amongst these, 174 proteins were upregulated in C8C3hvir and 216 were downregulated in C8C3lvir. The upregulated proteins in C8C3hvir were associated with the tricarboxylic acid cycle, ribosomal proteins, and redoxins. Higher levels of Czp, CRP, TS, Tc-85, and sialylated epitopes were expressed in C8C3hvir than in C8C3lvir. Thus, T. cruzi virulence may be related to virulence factor expression as well as upregulation of bioenergetic and biosynthetic pathways proteins. Taylor & Francis 2022-10-25 /pmc/articles/PMC9601562/ /pubmed/36284085 http://dx.doi.org/10.1080/21505594.2022.2132776 Text en © 2022 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
San Francisco, Juan
Astudillo, Constanza
Vega, José Luis
Catalán, Alejandro
Gutiérrez, Bessy
Araya, Jorge E
Zailberger, Anibal
Marina, Anabel
García, Carlos
Sanchez, Nuria
Osuna, Antonio
Vilchez, Susana
Ramírez, Marcel I
Macedo, Janaina
Feijoli, Verónica Santiago
Palmisano, Giuseppe
González, Jorge
Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
title Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
title_full Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
title_fullStr Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
title_full_unstemmed Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
title_short Trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
title_sort trypanosoma cruzi pathogenicity involves virulence factor expression and upregulation of bioenergetic and biosynthetic pathways
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601562/
https://www.ncbi.nlm.nih.gov/pubmed/36284085
http://dx.doi.org/10.1080/21505594.2022.2132776
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