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Identification of Contractile Vacuole Proteins in Trypanosoma cruzi

Contractile vacuole complexes are critical components of cell volume regulation and have been shown to have other functional roles in several free-living protists. However, very little is known about the functions of the contractile vacuole complex of the parasite Trypanosoma cruzi, the etiologic ag...

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Autores principales: Ulrich, Paul N., Jimenez, Veronica, Park, Miyoung, Martins, Vicente P., Atwood, James, Moles, Kristen, Collins, Dalis, Rohloff, Peter, Tarleton, Rick, Moreno, Silvia N. J., Orlando, Ron, Docampo, Roberto
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060929/
https://www.ncbi.nlm.nih.gov/pubmed/21437209
http://dx.doi.org/10.1371/journal.pone.0018013
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author Ulrich, Paul N.
Jimenez, Veronica
Park, Miyoung
Martins, Vicente P.
Atwood, James
Moles, Kristen
Collins, Dalis
Rohloff, Peter
Tarleton, Rick
Moreno, Silvia N. J.
Orlando, Ron
Docampo, Roberto
author_facet Ulrich, Paul N.
Jimenez, Veronica
Park, Miyoung
Martins, Vicente P.
Atwood, James
Moles, Kristen
Collins, Dalis
Rohloff, Peter
Tarleton, Rick
Moreno, Silvia N. J.
Orlando, Ron
Docampo, Roberto
author_sort Ulrich, Paul N.
collection PubMed
description Contractile vacuole complexes are critical components of cell volume regulation and have been shown to have other functional roles in several free-living protists. However, very little is known about the functions of the contractile vacuole complex of the parasite Trypanosoma cruzi, the etiologic agent of Chagas disease, other than a role in osmoregulation. Identification of the protein composition of these organelles is important for understanding their physiological roles. We applied a combined proteomic and bioinfomatic approach to identify proteins localized to the contractile vacuole. Proteomic analysis of a T. cruzi fraction enriched for contractile vacuoles and analyzed by one-dimensional gel electrophoresis and LC-MS/MS resulted in the addition of 109 newly detected proteins to the group of expressed proteins of epimastigotes. We also identified different peptides that map to at least 39 members of the dispersed gene family 1 (DGF-1) providing evidence that many members of this family are simultaneously expressed in epimastigotes. Of the proteins present in the fraction we selected several homologues with known localizations in contractile vacuoles of other organisms and others that we expected to be present in these vacuoles on the basis of their potential roles. We determined the localization of each by expression as GFP-fusion proteins or with specific antibodies. Six of these putative proteins (Rab11, Rab32, AP180, ATPase subunit B, VAMP1, and phosphate transporter) predominantly localized to the vacuole bladder. TcSNARE2.1, TcSNARE2.2, and calmodulin localized to the spongiome. Calmodulin was also cytosolic. Our results demonstrate the utility of combining subcellular fractionation, proteomic analysis, and bioinformatic approaches for localization of organellar proteins that are difficult to detect with whole cell methodologies. The CV localization of the proteins investigated revealed potential novel roles of these organelles in phosphate metabolism and provided information on the potential participation of adaptor protein complexes in their biogenesis.
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spelling pubmed-30609292011-03-23 Identification of Contractile Vacuole Proteins in Trypanosoma cruzi Ulrich, Paul N. Jimenez, Veronica Park, Miyoung Martins, Vicente P. Atwood, James Moles, Kristen Collins, Dalis Rohloff, Peter Tarleton, Rick Moreno, Silvia N. J. Orlando, Ron Docampo, Roberto PLoS One Research Article Contractile vacuole complexes are critical components of cell volume regulation and have been shown to have other functional roles in several free-living protists. However, very little is known about the functions of the contractile vacuole complex of the parasite Trypanosoma cruzi, the etiologic agent of Chagas disease, other than a role in osmoregulation. Identification of the protein composition of these organelles is important for understanding their physiological roles. We applied a combined proteomic and bioinfomatic approach to identify proteins localized to the contractile vacuole. Proteomic analysis of a T. cruzi fraction enriched for contractile vacuoles and analyzed by one-dimensional gel electrophoresis and LC-MS/MS resulted in the addition of 109 newly detected proteins to the group of expressed proteins of epimastigotes. We also identified different peptides that map to at least 39 members of the dispersed gene family 1 (DGF-1) providing evidence that many members of this family are simultaneously expressed in epimastigotes. Of the proteins present in the fraction we selected several homologues with known localizations in contractile vacuoles of other organisms and others that we expected to be present in these vacuoles on the basis of their potential roles. We determined the localization of each by expression as GFP-fusion proteins or with specific antibodies. Six of these putative proteins (Rab11, Rab32, AP180, ATPase subunit B, VAMP1, and phosphate transporter) predominantly localized to the vacuole bladder. TcSNARE2.1, TcSNARE2.2, and calmodulin localized to the spongiome. Calmodulin was also cytosolic. Our results demonstrate the utility of combining subcellular fractionation, proteomic analysis, and bioinformatic approaches for localization of organellar proteins that are difficult to detect with whole cell methodologies. The CV localization of the proteins investigated revealed potential novel roles of these organelles in phosphate metabolism and provided information on the potential participation of adaptor protein complexes in their biogenesis. Public Library of Science 2011-03-18 /pmc/articles/PMC3060929/ /pubmed/21437209 http://dx.doi.org/10.1371/journal.pone.0018013 Text en Ulrich 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
Ulrich, Paul N.
Jimenez, Veronica
Park, Miyoung
Martins, Vicente P.
Atwood, James
Moles, Kristen
Collins, Dalis
Rohloff, Peter
Tarleton, Rick
Moreno, Silvia N. J.
Orlando, Ron
Docampo, Roberto
Identification of Contractile Vacuole Proteins in Trypanosoma cruzi
title Identification of Contractile Vacuole Proteins in Trypanosoma cruzi
title_full Identification of Contractile Vacuole Proteins in Trypanosoma cruzi
title_fullStr Identification of Contractile Vacuole Proteins in Trypanosoma cruzi
title_full_unstemmed Identification of Contractile Vacuole Proteins in Trypanosoma cruzi
title_short Identification of Contractile Vacuole Proteins in Trypanosoma cruzi
title_sort identification of contractile vacuole proteins in trypanosoma cruzi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3060929/
https://www.ncbi.nlm.nih.gov/pubmed/21437209
http://dx.doi.org/10.1371/journal.pone.0018013
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