Metabolomics to unveil and understand phenotypic diversity between pathogen populations.

Leishmaniasis is a debilitating disease caused by the parasite Leishmania. There is extensive clinical polymorphism, including variable responsiveness to treatment. We study Leishmania donovani parasites isolated from visceral leishmaniasis patients in Nepal that responded differently to antimonial...

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Main Authors: Ruben t'Kindt, Richard A Scheltema, Andris Jankevics, Kirstyn Brunker, Suman Rijal, Jean-Claude Dujardin, Rainer Breitling, David G Watson, Graham H Coombs, Saskia Decuypere
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS Neglected Tropical Diseases
Online Access:http://europepmc.org/articles/PMC2994915?pdf=render
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spelling doaj-15d3406ddeb642deaf50a5a729207b192020-11-25T01:34:57ZengPublic Library of Science (PLoS)PLoS Neglected Tropical Diseases1935-27352010-01-01411e90410.1371/journal.pntd.0000904Metabolomics to unveil and understand phenotypic diversity between pathogen populations.Ruben t'KindtRichard A ScheltemaAndris JankevicsKirstyn BrunkerSuman RijalJean-Claude DujardinRainer BreitlingDavid G WatsonGraham H CoombsSaskia DecuypereLeishmaniasis is a debilitating disease caused by the parasite Leishmania. There is extensive clinical polymorphism, including variable responsiveness to treatment. We study Leishmania donovani parasites isolated from visceral leishmaniasis patients in Nepal that responded differently to antimonial treatment due to differing intrinsic drug sensitivity of the parasites. Here, we present a proof-of-principle study in which we applied a metabolomics pipeline specifically developed for L. donovani to characterize the global metabolic differences between antimonial-sensitive and antimonial-resistant L. donovani isolates. Clones of drug-sensitive and drug-resistant parasite isolates from clinical samples were cultured in vitro and harvested for metabolomics analysis. The relative abundance of 340 metabolites was determined by ZIC-HILIC chromatography coupled to LTQ-Orbitrap mass spectrometry. Our measurements cover approximately 20% of the predicted core metabolome of Leishmania and additionally detected a large number of lipids. Drug-sensitive and drug-resistant parasites showed distinct metabolic profiles, and unsupervised clustering and principal component analysis clearly distinguished the two phenotypes. For 100 metabolites, the detected intensity differed more than three-fold between the 2 phenotypes. Many of these were in specific areas of lipid metabolism, suggesting that the membrane composition of the drug-resistant parasites is extensively modified. Untargeted metabolomics has been applied on clinical Leishmania isolates to uncover major metabolic differences between drug-sensitive and drug-resistant isolates. The identified major differences provide novel insights into the mechanisms involved in resistance to antimonial drugs, and facilitate investigations using targeted approaches to unravel the key changes mediating drug resistance.http://europepmc.org/articles/PMC2994915?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ruben t'Kindt
Richard A Scheltema
Andris Jankevics
Kirstyn Brunker
Suman Rijal
Jean-Claude Dujardin
Rainer Breitling
David G Watson
Graham H Coombs
Saskia Decuypere
spellingShingle Ruben t'Kindt
Richard A Scheltema
Andris Jankevics
Kirstyn Brunker
Suman Rijal
Jean-Claude Dujardin
Rainer Breitling
David G Watson
Graham H Coombs
Saskia Decuypere
Metabolomics to unveil and understand phenotypic diversity between pathogen populations.
PLoS Neglected Tropical Diseases
author_facet Ruben t'Kindt
Richard A Scheltema
Andris Jankevics
Kirstyn Brunker
Suman Rijal
Jean-Claude Dujardin
Rainer Breitling
David G Watson
Graham H Coombs
Saskia Decuypere
author_sort Ruben t'Kindt
title Metabolomics to unveil and understand phenotypic diversity between pathogen populations.
title_short Metabolomics to unveil and understand phenotypic diversity between pathogen populations.
title_full Metabolomics to unveil and understand phenotypic diversity between pathogen populations.
title_fullStr Metabolomics to unveil and understand phenotypic diversity between pathogen populations.
title_full_unstemmed Metabolomics to unveil and understand phenotypic diversity between pathogen populations.
title_sort metabolomics to unveil and understand phenotypic diversity between pathogen populations.
publisher Public Library of Science (PLoS)
series PLoS Neglected Tropical Diseases
issn 1935-2735
publishDate 2010-01-01
description Leishmaniasis is a debilitating disease caused by the parasite Leishmania. There is extensive clinical polymorphism, including variable responsiveness to treatment. We study Leishmania donovani parasites isolated from visceral leishmaniasis patients in Nepal that responded differently to antimonial treatment due to differing intrinsic drug sensitivity of the parasites. Here, we present a proof-of-principle study in which we applied a metabolomics pipeline specifically developed for L. donovani to characterize the global metabolic differences between antimonial-sensitive and antimonial-resistant L. donovani isolates. Clones of drug-sensitive and drug-resistant parasite isolates from clinical samples were cultured in vitro and harvested for metabolomics analysis. The relative abundance of 340 metabolites was determined by ZIC-HILIC chromatography coupled to LTQ-Orbitrap mass spectrometry. Our measurements cover approximately 20% of the predicted core metabolome of Leishmania and additionally detected a large number of lipids. Drug-sensitive and drug-resistant parasites showed distinct metabolic profiles, and unsupervised clustering and principal component analysis clearly distinguished the two phenotypes. For 100 metabolites, the detected intensity differed more than three-fold between the 2 phenotypes. Many of these were in specific areas of lipid metabolism, suggesting that the membrane composition of the drug-resistant parasites is extensively modified. Untargeted metabolomics has been applied on clinical Leishmania isolates to uncover major metabolic differences between drug-sensitive and drug-resistant isolates. The identified major differences provide novel insights into the mechanisms involved in resistance to antimonial drugs, and facilitate investigations using targeted approaches to unravel the key changes mediating drug resistance.
url http://europepmc.org/articles/PMC2994915?pdf=render
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