Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.

Acidocalcisomes are acidic organelles present in a diverse range of organisms from bacteria to human cells. In this study acidocalcisomes were purified from the model organism Trypanosoma brucei, and their protein composition was determined by mass spectrometry. The results, along with those that we...

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Main Authors: Guozhong Huang, Paul N Ulrich, Melissa Storey, Darryl Johnson, Julie Tischer, Javier A Tovar, Silvia N J Moreno, Ron Orlando, Roberto Docampo
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-12-01
Series:PLoS Pathogens
Online Access:http://europepmc.org/articles/PMC4263762?pdf=render
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spelling doaj-66c71bb007314252bc1cf3b0fcf55f6c2020-11-24T22:09:19ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742014-12-011012e100455510.1371/journal.ppat.1004555Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.Guozhong HuangPaul N UlrichMelissa StoreyDarryl JohnsonJulie TischerJavier A TovarSilvia N J MorenoRon OrlandoRoberto DocampoAcidocalcisomes are acidic organelles present in a diverse range of organisms from bacteria to human cells. In this study acidocalcisomes were purified from the model organism Trypanosoma brucei, and their protein composition was determined by mass spectrometry. The results, along with those that we previously reported, show that acidocalcisomes are rich in pumps and transporters, involved in phosphate and cation homeostasis, and calcium signaling. We validated the acidocalcisome localization of seven new, putative, acidocalcisome proteins (phosphate transporter, vacuolar H+-ATPase subunits a and d, vacuolar iron transporter, zinc transporter, polyamine transporter, and acid phosphatase), confirmed the presence of six previously characterized acidocalcisome proteins, and validated the localization of five novel proteins to different subcellular compartments by expressing them fused to epitope tags in their endogenous loci or by immunofluorescence microscopy with specific antibodies. Knockdown of several newly identified acidocalcisome proteins by RNA interference (RNAi) revealed that they are essential for the survival of the parasites. These results provide a comprehensive insight into the unique composition of acidocalcisomes of T. brucei, an important eukaryotic pathogen, and direct evidence that acidocalcisomes are especially adapted for the accumulation of polyphosphate.http://europepmc.org/articles/PMC4263762?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Guozhong Huang
Paul N Ulrich
Melissa Storey
Darryl Johnson
Julie Tischer
Javier A Tovar
Silvia N J Moreno
Ron Orlando
Roberto Docampo
spellingShingle Guozhong Huang
Paul N Ulrich
Melissa Storey
Darryl Johnson
Julie Tischer
Javier A Tovar
Silvia N J Moreno
Ron Orlando
Roberto Docampo
Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
PLoS Pathogens
author_facet Guozhong Huang
Paul N Ulrich
Melissa Storey
Darryl Johnson
Julie Tischer
Javier A Tovar
Silvia N J Moreno
Ron Orlando
Roberto Docampo
author_sort Guozhong Huang
title Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
title_short Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
title_full Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
title_fullStr Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
title_full_unstemmed Proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
title_sort proteomic analysis of the acidocalcisome, an organelle conserved from bacteria to human cells.
publisher Public Library of Science (PLoS)
series PLoS Pathogens
issn 1553-7366
1553-7374
publishDate 2014-12-01
description Acidocalcisomes are acidic organelles present in a diverse range of organisms from bacteria to human cells. In this study acidocalcisomes were purified from the model organism Trypanosoma brucei, and their protein composition was determined by mass spectrometry. The results, along with those that we previously reported, show that acidocalcisomes are rich in pumps and transporters, involved in phosphate and cation homeostasis, and calcium signaling. We validated the acidocalcisome localization of seven new, putative, acidocalcisome proteins (phosphate transporter, vacuolar H+-ATPase subunits a and d, vacuolar iron transporter, zinc transporter, polyamine transporter, and acid phosphatase), confirmed the presence of six previously characterized acidocalcisome proteins, and validated the localization of five novel proteins to different subcellular compartments by expressing them fused to epitope tags in their endogenous loci or by immunofluorescence microscopy with specific antibodies. Knockdown of several newly identified acidocalcisome proteins by RNA interference (RNAi) revealed that they are essential for the survival of the parasites. These results provide a comprehensive insight into the unique composition of acidocalcisomes of T. brucei, an important eukaryotic pathogen, and direct evidence that acidocalcisomes are especially adapted for the accumulation of polyphosphate.
url http://europepmc.org/articles/PMC4263762?pdf=render
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