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Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes

Introduced about a century ago, suramin remains a frontline drug for the management of early-stage East African trypanosomiasis (sleeping sickness). Cellular entry into the causative agent, the protozoan parasite Trypanosoma brucei, occurs through receptor-mediated endocytosis involving the parasite...

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Autores principales: Zoltner, Martin, Campagnaro, Gustavo D., Taleva, Gergana, Burrell, Alana, Cerone, Michela, Leung, Ka-Fai, Achcar, Fiona, Horn, David, Vaughan, Sue, Gadelha, Catarina, Zíková, Alena, Barrett, Michael P., de Koning, Harry P., Field, Mark C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7294092/
https://www.ncbi.nlm.nih.gov/pubmed/32354742
http://dx.doi.org/10.1074/jbc.RA120.012355
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author Zoltner, Martin
Campagnaro, Gustavo D.
Taleva, Gergana
Burrell, Alana
Cerone, Michela
Leung, Ka-Fai
Achcar, Fiona
Horn, David
Vaughan, Sue
Gadelha, Catarina
Zíková, Alena
Barrett, Michael P.
de Koning, Harry P.
Field, Mark C.
author_facet Zoltner, Martin
Campagnaro, Gustavo D.
Taleva, Gergana
Burrell, Alana
Cerone, Michela
Leung, Ka-Fai
Achcar, Fiona
Horn, David
Vaughan, Sue
Gadelha, Catarina
Zíková, Alena
Barrett, Michael P.
de Koning, Harry P.
Field, Mark C.
author_sort Zoltner, Martin
collection PubMed
description Introduced about a century ago, suramin remains a frontline drug for the management of early-stage East African trypanosomiasis (sleeping sickness). Cellular entry into the causative agent, the protozoan parasite Trypanosoma brucei, occurs through receptor-mediated endocytosis involving the parasite's invariant surface glycoprotein 75 (ISG75), followed by transport into the cytosol via a lysosomal transporter. The molecular basis of the trypanocidal activity of suramin remains unclear, but some evidence suggests broad, but specific, impacts on trypanosome metabolism (i.e. polypharmacology). Here we observed that suramin is rapidly accumulated in trypanosome cells proportionally to ISG75 abundance. Although we found little evidence that suramin disrupts glycolytic or glycosomal pathways, we noted increased mitochondrial ATP production, but a net decrease in cellular ATP levels. Metabolomics highlighted additional impacts on mitochondrial metabolism, including partial Krebs' cycle activation and significant accumulation of pyruvate, corroborated by increased expression of mitochondrial enzymes and transporters. Significantly, the vast majority of suramin-induced proteins were normally more abundant in the insect forms compared with the blood stage of the parasite, including several proteins associated with differentiation. We conclude that suramin has multiple and complex effects on trypanosomes, but unexpectedly partially activates mitochondrial ATP-generating activity. We propose that despite apparent compensatory mechanisms in drug-challenged cells, the suramin-induced collapse of cellular ATP ultimately leads to trypanosome cell death.
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spelling pubmed-72940922020-06-18 Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes Zoltner, Martin Campagnaro, Gustavo D. Taleva, Gergana Burrell, Alana Cerone, Michela Leung, Ka-Fai Achcar, Fiona Horn, David Vaughan, Sue Gadelha, Catarina Zíková, Alena Barrett, Michael P. de Koning, Harry P. Field, Mark C. J Biol Chem Metabolism Introduced about a century ago, suramin remains a frontline drug for the management of early-stage East African trypanosomiasis (sleeping sickness). Cellular entry into the causative agent, the protozoan parasite Trypanosoma brucei, occurs through receptor-mediated endocytosis involving the parasite's invariant surface glycoprotein 75 (ISG75), followed by transport into the cytosol via a lysosomal transporter. The molecular basis of the trypanocidal activity of suramin remains unclear, but some evidence suggests broad, but specific, impacts on trypanosome metabolism (i.e. polypharmacology). Here we observed that suramin is rapidly accumulated in trypanosome cells proportionally to ISG75 abundance. Although we found little evidence that suramin disrupts glycolytic or glycosomal pathways, we noted increased mitochondrial ATP production, but a net decrease in cellular ATP levels. Metabolomics highlighted additional impacts on mitochondrial metabolism, including partial Krebs' cycle activation and significant accumulation of pyruvate, corroborated by increased expression of mitochondrial enzymes and transporters. Significantly, the vast majority of suramin-induced proteins were normally more abundant in the insect forms compared with the blood stage of the parasite, including several proteins associated with differentiation. We conclude that suramin has multiple and complex effects on trypanosomes, but unexpectedly partially activates mitochondrial ATP-generating activity. We propose that despite apparent compensatory mechanisms in drug-challenged cells, the suramin-induced collapse of cellular ATP ultimately leads to trypanosome cell death. American Society for Biochemistry and Molecular Biology 2020-06-12 2020-04-30 /pmc/articles/PMC7294092/ /pubmed/32354742 http://dx.doi.org/10.1074/jbc.RA120.012355 Text en © 2020 Zoltner et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Metabolism
Zoltner, Martin
Campagnaro, Gustavo D.
Taleva, Gergana
Burrell, Alana
Cerone, Michela
Leung, Ka-Fai
Achcar, Fiona
Horn, David
Vaughan, Sue
Gadelha, Catarina
Zíková, Alena
Barrett, Michael P.
de Koning, Harry P.
Field, Mark C.
Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes
title Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes
title_full Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes
title_fullStr Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes
title_full_unstemmed Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes
title_short Suramin exposure alters cellular metabolism and mitochondrial energy production in African trypanosomes
title_sort suramin exposure alters cellular metabolism and mitochondrial energy production in african trypanosomes
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7294092/
https://www.ncbi.nlm.nih.gov/pubmed/32354742
http://dx.doi.org/10.1074/jbc.RA120.012355
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