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Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter

The active transport of glycolytic pyruvate across the inner mitochondrial membrane is thought to involve two mitochondrial pyruvate carrier subunits, MPC1 and MPC2, assembled as a 150 kDa heterotypic oligomer. Here, the recombinant production of human MPC through a co-expression strategy is first d...

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Autores principales: Nagampalli, Raghavendra Sashi Krishna, Quesñay, José Edwin Neciosup, Adamoski, Douglas, Islam, Zeyaul, Birch, James, Sebinelli, Heitor Gobbi, Girard, Richard Marcel Bruno Moreira, Ascenção, Carolline Fernanda Rodrigues, Fala, Angela Maria, Pauletti, Bianca Alves, Consonni, Sílvio Roberto, de Oliveira, Juliana Ferreira, Silva, Amanda Cristina Teixeira, Franchini, Kleber Gomes, Leme, Adriana Franco Paes, Silber, Ariel Mariano, Ciancaglini, Pietro, Moraes, Isabel, Dias, Sandra Martha Gomes, Ambrosio, Andre Luis Berteli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5823908/
https://www.ncbi.nlm.nih.gov/pubmed/29472561
http://dx.doi.org/10.1038/s41598-018-21740-z
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author Nagampalli, Raghavendra Sashi Krishna
Quesñay, José Edwin Neciosup
Adamoski, Douglas
Islam, Zeyaul
Birch, James
Sebinelli, Heitor Gobbi
Girard, Richard Marcel Bruno Moreira
Ascenção, Carolline Fernanda Rodrigues
Fala, Angela Maria
Pauletti, Bianca Alves
Consonni, Sílvio Roberto
de Oliveira, Juliana Ferreira
Silva, Amanda Cristina Teixeira
Franchini, Kleber Gomes
Leme, Adriana Franco Paes
Silber, Ariel Mariano
Ciancaglini, Pietro
Moraes, Isabel
Dias, Sandra Martha Gomes
Ambrosio, Andre Luis Berteli
author_facet Nagampalli, Raghavendra Sashi Krishna
Quesñay, José Edwin Neciosup
Adamoski, Douglas
Islam, Zeyaul
Birch, James
Sebinelli, Heitor Gobbi
Girard, Richard Marcel Bruno Moreira
Ascenção, Carolline Fernanda Rodrigues
Fala, Angela Maria
Pauletti, Bianca Alves
Consonni, Sílvio Roberto
de Oliveira, Juliana Ferreira
Silva, Amanda Cristina Teixeira
Franchini, Kleber Gomes
Leme, Adriana Franco Paes
Silber, Ariel Mariano
Ciancaglini, Pietro
Moraes, Isabel
Dias, Sandra Martha Gomes
Ambrosio, Andre Luis Berteli
author_sort Nagampalli, Raghavendra Sashi Krishna
collection PubMed
description The active transport of glycolytic pyruvate across the inner mitochondrial membrane is thought to involve two mitochondrial pyruvate carrier subunits, MPC1 and MPC2, assembled as a 150 kDa heterotypic oligomer. Here, the recombinant production of human MPC through a co-expression strategy is first described; however, substantial complex formation was not observed, and predominantly individual subunits were purified. In contrast to MPC1, which co-purifies with a host chaperone, we demonstrated that MPC2 homo-oligomers promote efficient pyruvate transport into proteoliposomes. The derived functional requirements and kinetic features of MPC2 resemble those previously demonstrated for MPC in the literature. Distinctly, chemical inhibition of transport is observed only for a thiazolidinedione derivative. The autonomous transport role for MPC2 is validated in cells when the ectopic expression of human MPC2 in yeast lacking endogenous MPC stimulated growth and increased oxygen consumption. Multiple oligomeric species of MPC2 across mitochondrial isolates, purified protein and artificial lipid bilayers suggest functional high-order complexes. Significant changes in the secondary structure content of MPC2, as probed by synchrotron radiation circular dichroism, further supports the interaction between the protein and ligands. Our results provide the initial framework for the independent role of MPC2 in homeostasis and diseases related to dysregulated pyruvate metabolism.
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spelling pubmed-58239082018-02-26 Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter Nagampalli, Raghavendra Sashi Krishna Quesñay, José Edwin Neciosup Adamoski, Douglas Islam, Zeyaul Birch, James Sebinelli, Heitor Gobbi Girard, Richard Marcel Bruno Moreira Ascenção, Carolline Fernanda Rodrigues Fala, Angela Maria Pauletti, Bianca Alves Consonni, Sílvio Roberto de Oliveira, Juliana Ferreira Silva, Amanda Cristina Teixeira Franchini, Kleber Gomes Leme, Adriana Franco Paes Silber, Ariel Mariano Ciancaglini, Pietro Moraes, Isabel Dias, Sandra Martha Gomes Ambrosio, Andre Luis Berteli Sci Rep Article The active transport of glycolytic pyruvate across the inner mitochondrial membrane is thought to involve two mitochondrial pyruvate carrier subunits, MPC1 and MPC2, assembled as a 150 kDa heterotypic oligomer. Here, the recombinant production of human MPC through a co-expression strategy is first described; however, substantial complex formation was not observed, and predominantly individual subunits were purified. In contrast to MPC1, which co-purifies with a host chaperone, we demonstrated that MPC2 homo-oligomers promote efficient pyruvate transport into proteoliposomes. The derived functional requirements and kinetic features of MPC2 resemble those previously demonstrated for MPC in the literature. Distinctly, chemical inhibition of transport is observed only for a thiazolidinedione derivative. The autonomous transport role for MPC2 is validated in cells when the ectopic expression of human MPC2 in yeast lacking endogenous MPC stimulated growth and increased oxygen consumption. Multiple oligomeric species of MPC2 across mitochondrial isolates, purified protein and artificial lipid bilayers suggest functional high-order complexes. Significant changes in the secondary structure content of MPC2, as probed by synchrotron radiation circular dichroism, further supports the interaction between the protein and ligands. Our results provide the initial framework for the independent role of MPC2 in homeostasis and diseases related to dysregulated pyruvate metabolism. Nature Publishing Group UK 2018-02-22 /pmc/articles/PMC5823908/ /pubmed/29472561 http://dx.doi.org/10.1038/s41598-018-21740-z Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Nagampalli, Raghavendra Sashi Krishna
Quesñay, José Edwin Neciosup
Adamoski, Douglas
Islam, Zeyaul
Birch, James
Sebinelli, Heitor Gobbi
Girard, Richard Marcel Bruno Moreira
Ascenção, Carolline Fernanda Rodrigues
Fala, Angela Maria
Pauletti, Bianca Alves
Consonni, Sílvio Roberto
de Oliveira, Juliana Ferreira
Silva, Amanda Cristina Teixeira
Franchini, Kleber Gomes
Leme, Adriana Franco Paes
Silber, Ariel Mariano
Ciancaglini, Pietro
Moraes, Isabel
Dias, Sandra Martha Gomes
Ambrosio, Andre Luis Berteli
Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
title Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
title_full Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
title_fullStr Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
title_full_unstemmed Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
title_short Human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
title_sort human mitochondrial pyruvate carrier 2 as an autonomous membrane transporter
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5823908/
https://www.ncbi.nlm.nih.gov/pubmed/29472561
http://dx.doi.org/10.1038/s41598-018-21740-z
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