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A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization

Parasitological cure for Chagas disease is considered extremely difficult to achieve because of the lack of effective chemotherapeutic agents against Trypanosoma cruzi at different stages of infection. There are currently only two drugs available. These have several limitations and can produce serio...

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Autores principales: Orrego, Patricio R., Olivares, Héctor, Cordero, Esteban M., Bressan, Albert, Cortez, Mauro, Sagua, Hernán, Neira, Ivan, González, Jorge, da Silveira, José Franco, Yoshida, Nobuko, Araya, Jorge E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907409/
https://www.ncbi.nlm.nih.gov/pubmed/24498455
http://dx.doi.org/10.1371/journal.pntd.0002676
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author Orrego, Patricio R.
Olivares, Héctor
Cordero, Esteban M.
Bressan, Albert
Cortez, Mauro
Sagua, Hernán
Neira, Ivan
González, Jorge
da Silveira, José Franco
Yoshida, Nobuko
Araya, Jorge E.
author_facet Orrego, Patricio R.
Olivares, Héctor
Cordero, Esteban M.
Bressan, Albert
Cortez, Mauro
Sagua, Hernán
Neira, Ivan
González, Jorge
da Silveira, José Franco
Yoshida, Nobuko
Araya, Jorge E.
author_sort Orrego, Patricio R.
collection PubMed
description Parasitological cure for Chagas disease is considered extremely difficult to achieve because of the lack of effective chemotherapeutic agents against Trypanosoma cruzi at different stages of infection. There are currently only two drugs available. These have several limitations and can produce serious side effects. Thus, new chemotherapeutic targets are much sought after. Among T. cruzi components involved in key processes such as parasite proliferation and host cell invasion, Ca(2+)-dependent molecules play an important role. Calcineurin (CaN) is one such molecule. In this study, we cloned a new isoform of the gene coding for CL strain catalytic subunit CaNA (TcCaNA2) and characterized it molecularly and functionally. There is one copy of the TcCaNA2 gene per haploid genome. It is constitutively transcribed in all T. cruzi developmental forms and is localized predominantly in the cytosol. In the parasite, TcCaNA2 is associated with CaNB. The recombinant protein TcCaNA2 has phosphatase activity that is enhanced by Mn(2+)/Ni(2+). The participation of TcCaNA2 in target cell invasion by metacyclic trypomastigotes was also demonstrated. Metacyclic forms with reduced TcCaNA2 expression following treatment with morpholino antisense oligonucleotides targeted to TcCaNA2 invaded HeLa cells at a lower rate than control parasites treated with morpholino sense oligonucleotides. Similarly, the decreased expression of TcCaNA2 following treatment with antisense morpholino oligonucleotides partially affected the replication of epimastigotes, although to a lesser extent than the decrease in expression following treatment with calcineurin inhibitors. Our findings suggest that the calcineurin activities of TcCaNA2/CaNB and TcCaNA/CaNB, which have distinct cellular localizations (the cytoplasm and the nucleus, respectively), may play a critical role at different stages of T. cruzi development, the former in host cell invasion and the latter in parasite multiplication.
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spelling pubmed-39074092014-02-04 A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization Orrego, Patricio R. Olivares, Héctor Cordero, Esteban M. Bressan, Albert Cortez, Mauro Sagua, Hernán Neira, Ivan González, Jorge da Silveira, José Franco Yoshida, Nobuko Araya, Jorge E. PLoS Negl Trop Dis Research Article Parasitological cure for Chagas disease is considered extremely difficult to achieve because of the lack of effective chemotherapeutic agents against Trypanosoma cruzi at different stages of infection. There are currently only two drugs available. These have several limitations and can produce serious side effects. Thus, new chemotherapeutic targets are much sought after. Among T. cruzi components involved in key processes such as parasite proliferation and host cell invasion, Ca(2+)-dependent molecules play an important role. Calcineurin (CaN) is one such molecule. In this study, we cloned a new isoform of the gene coding for CL strain catalytic subunit CaNA (TcCaNA2) and characterized it molecularly and functionally. There is one copy of the TcCaNA2 gene per haploid genome. It is constitutively transcribed in all T. cruzi developmental forms and is localized predominantly in the cytosol. In the parasite, TcCaNA2 is associated with CaNB. The recombinant protein TcCaNA2 has phosphatase activity that is enhanced by Mn(2+)/Ni(2+). The participation of TcCaNA2 in target cell invasion by metacyclic trypomastigotes was also demonstrated. Metacyclic forms with reduced TcCaNA2 expression following treatment with morpholino antisense oligonucleotides targeted to TcCaNA2 invaded HeLa cells at a lower rate than control parasites treated with morpholino sense oligonucleotides. Similarly, the decreased expression of TcCaNA2 following treatment with antisense morpholino oligonucleotides partially affected the replication of epimastigotes, although to a lesser extent than the decrease in expression following treatment with calcineurin inhibitors. Our findings suggest that the calcineurin activities of TcCaNA2/CaNB and TcCaNA/CaNB, which have distinct cellular localizations (the cytoplasm and the nucleus, respectively), may play a critical role at different stages of T. cruzi development, the former in host cell invasion and the latter in parasite multiplication. Public Library of Science 2014-01-30 /pmc/articles/PMC3907409/ /pubmed/24498455 http://dx.doi.org/10.1371/journal.pntd.0002676 Text en © 2014 Orrego 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
Orrego, Patricio R.
Olivares, Héctor
Cordero, Esteban M.
Bressan, Albert
Cortez, Mauro
Sagua, Hernán
Neira, Ivan
González, Jorge
da Silveira, José Franco
Yoshida, Nobuko
Araya, Jorge E.
A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization
title A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization
title_full A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization
title_fullStr A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization
title_full_unstemmed A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization
title_short A Cytoplasmic New Catalytic Subunit of Calcineurin in Trypanosoma cruzi and Its Molecular and Functional Characterization
title_sort cytoplasmic new catalytic subunit of calcineurin in trypanosoma cruzi and its molecular and functional characterization
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3907409/
https://www.ncbi.nlm.nih.gov/pubmed/24498455
http://dx.doi.org/10.1371/journal.pntd.0002676
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