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Artículo

Involvement of trypomastigote small surface antigen (TSSA) in Trypanosoma cruzi invasion of mammalian cells

Canepa, Gaspar ExequielIcon ; Degese, María SolIcon ; Budu, Alexandre; Garcia, Celia R. S.; Buscaglia, Carlos AndresIcon
Fecha de publicación: 05/2012
Editorial: Portland Press
Revista: Biochemical Journal
ISSN: 0264-6021
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Bioquímica y Biología Molecular

Resumen

TSSA (trypomastigote small surface antigen) is a polymorphic mucin-like molecule displayed on the surface of Trypanosoma cruzi trypomastigote forms. To evaluate its functional properties, we undertook comparative biochemical and genetic approaches on isoforms present in parasite stocks from extant evolutionary lineages (CL Brener and Sylvio X-10). We show that CL Brener TSSA, but not the Sylvio X-10 counterpart, exhibits dosedependent and saturable binding towards non-macrophagic cell lines. This binding triggers Ca2+ -based signalling responses in the target cell while providing an anchor for the invading parasite.Accordingly, exogenous addition of either TSSA-derived peptides or specific antibodies significantly inhibits invasion of CL Brener, but not Sylvio X-10, trypomastigotes. Non-infective epimastigote forms, which do not express detectable levels of TSSA, were stably transfected with TSSA cDNA from either parasite stock. Although both transfectants produced a surfaceassociated mucin-like TSSA product, epimastigotes expressing CL Brener TSSA showed a ¡­2-fold increase in their attachment to mammalian cells. Overall, these findings indicate that CL Brener TSSA functions as a parasite adhesin, engaging surface receptor(s) and inducing signalling pathways on the host cell as a prerequisite for parasite internalization. More importantly, the contrasting functional features of TSSA isoforms provide one appealing mechanism underlying the differential infectivity of T. cruzi stocks.Trypanosoma cruzi trypomastigote forms. To evaluate its functional properties, we undertook comparative biochemical and genetic approaches on isoforms present in parasite stocks from extant evolutionary lineages (CL Brener and Sylvio X-10). We show that CL Brener TSSA, but not the Sylvio X-10 counterpart, exhibits dosedependent and saturable binding towards non-macrophagic cell lines. This binding triggers Ca2+ -based signalling responses in the target cell while providing an anchor for the invading parasite.Accordingly, exogenous addition of either TSSA-derived peptides or specific antibodies significantly inhibits invasion of CL Brener, but not Sylvio X-10, trypomastigotes. Non-infective epimastigote forms, which do not express detectable levels of TSSA, were stably transfected with TSSA cDNA from either parasite stock. Although both transfectants produced a surfaceassociated mucin-like TSSA product, epimastigotes expressing CL Brener TSSA showed a ¡­2-fold increase in their attachment to mammalian cells. Overall, these findings indicate that CL Brener TSSA functions as a parasite adhesin, engaging surface receptor(s) and inducing signalling pathways on the host cell as a prerequisite for parasite internalization. More importantly, the contrasting functional features of TSSA isoforms provide one appealing mechanism underlying the differential infectivity of T. cruzi stocks.
Palabras clave: Trypanosoma cruzi , mucin , TSSA , cell invasion
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/269745
URL: https://portlandpress.com/biochemj/article-abstract/444/2/211/81321/Involvement-
DOI: http://dx.doi.org/10.1042/BJ20120074
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Articulos(IIB-INTECH)
Articulos de INST.DE INVEST.BIOTECNOLOGICAS - INSTITUTO TECNOLOGICO CHASCOMUS
Citación
Canepa, Gaspar Exequiel; Degese, María Sol; Budu, Alexandre; Garcia, Celia R. S.; Buscaglia, Carlos Andres; Involvement of trypomastigote small surface antigen (TSSA) in Trypanosoma cruzi invasion of mammalian cells; Portland Press; Biochemical Journal; 444; 2; 5-2012; 211-218
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