The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.

The mitosomes of Giardia intestinalis are thought to be mitochondria highly-reduced in response to the oxygen-poor niche. We performed a quantitative proteomic assessment of Giardia mitosomes to increase understanding of the function and evolutionary origin of these enigmatic organelles. Mitosome-en...

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Autores principales: Petr L Jedelský, Pavel Doležal, Petr Rada, Jan Pyrih, Ondřej Smíd, Ivan Hrdý, Miroslava Sedinová, Michaela Marcinčiková, Lubomír Voleman, Andrew J Perry, Neritza Campo Beltrán, Trevor Lithgow, Jan Tachezy
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Publicado: Public Library of Science (PLoS) 2011
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spelling oai:doaj.org-article:712b0b57a5fb41aaa83449a5fe13180a2021-11-18T06:58:16ZThe minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.1932-620310.1371/journal.pone.0017285https://doaj.org/article/712b0b57a5fb41aaa83449a5fe13180a2011-02-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/21390322/pdf/?tool=EBIhttps://doaj.org/toc/1932-6203The mitosomes of Giardia intestinalis are thought to be mitochondria highly-reduced in response to the oxygen-poor niche. We performed a quantitative proteomic assessment of Giardia mitosomes to increase understanding of the function and evolutionary origin of these enigmatic organelles. Mitosome-enriched fractions were obtained from cell homogenate using Optiprep gradient centrifugation. To distinguish mitosomal proteins from contamination, we used a quantitative shot-gun strategy based on isobaric tagging of peptides with iTRAQ and tandem mass spectrometry. Altogether, 638 proteins were identified in mitosome-enriched fractions. Of these, 139 proteins had iTRAQ ratio similar to that of the six known mitosomal markers. Proteins were selected for expression in Giardia to verify their cellular localizations and the mitosomal localization of 20 proteins was confirmed. These proteins include nine components of the FeS cluster assembly machinery, a novel diflavo-protein with NADPH reductase activity, a novel VAMP-associated protein, and a key component of the outer membrane protein translocase. None of the novel mitosomal proteins was predicted by previous genome analyses. The small proteome of the Giardia mitosome reflects the reduction in mitochondrial metabolism, which is limited to the FeS cluster assembly pathway, and a simplicity in the protein import pathway required for organelle biogenesis.Petr L JedelskýPavel DoležalPetr RadaJan PyrihOndřej SmídIvan HrdýMiroslava SedinováMichaela MarcinčikováLubomír VolemanAndrew J PerryNeritza Campo BeltránTrevor LithgowJan TachezyPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 6, Iss 2, p e17285 (2011)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Petr L Jedelský
Pavel Doležal
Petr Rada
Jan Pyrih
Ondřej Smíd
Ivan Hrdý
Miroslava Sedinová
Michaela Marcinčiková
Lubomír Voleman
Andrew J Perry
Neritza Campo Beltrán
Trevor Lithgow
Jan Tachezy
The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.
description The mitosomes of Giardia intestinalis are thought to be mitochondria highly-reduced in response to the oxygen-poor niche. We performed a quantitative proteomic assessment of Giardia mitosomes to increase understanding of the function and evolutionary origin of these enigmatic organelles. Mitosome-enriched fractions were obtained from cell homogenate using Optiprep gradient centrifugation. To distinguish mitosomal proteins from contamination, we used a quantitative shot-gun strategy based on isobaric tagging of peptides with iTRAQ and tandem mass spectrometry. Altogether, 638 proteins were identified in mitosome-enriched fractions. Of these, 139 proteins had iTRAQ ratio similar to that of the six known mitosomal markers. Proteins were selected for expression in Giardia to verify their cellular localizations and the mitosomal localization of 20 proteins was confirmed. These proteins include nine components of the FeS cluster assembly machinery, a novel diflavo-protein with NADPH reductase activity, a novel VAMP-associated protein, and a key component of the outer membrane protein translocase. None of the novel mitosomal proteins was predicted by previous genome analyses. The small proteome of the Giardia mitosome reflects the reduction in mitochondrial metabolism, which is limited to the FeS cluster assembly pathway, and a simplicity in the protein import pathway required for organelle biogenesis.
format article
author Petr L Jedelský
Pavel Doležal
Petr Rada
Jan Pyrih
Ondřej Smíd
Ivan Hrdý
Miroslava Sedinová
Michaela Marcinčiková
Lubomír Voleman
Andrew J Perry
Neritza Campo Beltrán
Trevor Lithgow
Jan Tachezy
author_facet Petr L Jedelský
Pavel Doležal
Petr Rada
Jan Pyrih
Ondřej Smíd
Ivan Hrdý
Miroslava Sedinová
Michaela Marcinčiková
Lubomír Voleman
Andrew J Perry
Neritza Campo Beltrán
Trevor Lithgow
Jan Tachezy
author_sort Petr L Jedelský
title The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.
title_short The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.
title_full The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.
title_fullStr The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.
title_full_unstemmed The minimal proteome in the reduced mitochondrion of the parasitic protist Giardia intestinalis.
title_sort minimal proteome in the reduced mitochondrion of the parasitic protist giardia intestinalis.
publisher Public Library of Science (PLoS)
publishDate 2011
url https://doaj.org/article/712b0b57a5fb41aaa83449a5fe13180a
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