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Citations to this article

Two human patient mitochondrial pyruvate carrier mutations reveal distinct molecular mechanisms of dysfunction
Lalita Oonthonpan, … , Audrey C. Boutron, Eric B. Taylor
Lalita Oonthonpan, … , Audrey C. Boutron, Eric B. Taylor
Published May 30, 2019
Citation Information: JCI Insight. 2019;4(13):e126132. https://doi.org/10.1172/jci.insight.126132.
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Research Article Cell biology Metabolism

Two human patient mitochondrial pyruvate carrier mutations reveal distinct molecular mechanisms of dysfunction

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Abstract

The mitochondrial pyruvate carrier (MPC) occupies a central metabolic node by transporting cytosolic pyruvate into the mitochondrial matrix and linking glycolysis with mitochondrial metabolism. Two reported human MPC1 mutations cause developmental abnormalities, neurological problems, metabolic deficits, and for one patient, early death. We aimed to understand biochemical mechanisms by which the human patient C289T and T236A MPC1 alleles disrupt MPC function. MPC1 C289T encodes 2 protein variants, a misspliced, truncation mutant (A58G) and a full-length point mutant (R97W). MPC1 T236A encodes a full-length point mutant (L79H). Using human patient fibroblasts and complementation of CRISPR-deleted, MPC1-null mouse C2C12 cells, we investigated how MPC1 mutations cause MPC deficiency. Truncated MPC1 A58G protein was intrinsically unstable and failed to form MPC complexes. The MPC1 R97W protein was less stable but, when overexpressed, formed complexes with MPC2 that retained pyruvate transport activity. Conversely, MPC1 L79H protein formed stable complexes with MPC2, but these complexes failed to transport pyruvate. These findings inform MPC structure-function relationships and delineate 3 distinct biochemical pathologies resulting from 2 human patient MPC1 mutations. They also illustrate an efficient gene pass-through system for mechanistically investigating human inborn errors in pyruvate metabolism.

Authors

Lalita Oonthonpan, Adam J. Rauckhorst, Lawrence R. Gray, Audrey C. Boutron, Eric B. Taylor

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Total citations by year

Year: 2024 2023 2022 2021 2020 2019 Total
Citations: 5 2 4 4 8 3 26
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Citations to this article (26)

Title and authors Publication Year
Glucose-derived glutamate drives neuronal terminal differentiation in vitro.
D'Andrea L, Audano M, Pedretti S, Pelucchi S, Stringhi R, Imperato G, De Cesare G, Cambria C, Laporte MH, Zamboni N, Antonucci F, Di Luca M, Mitro N, Marcello E
EMBO reports 2024
Computational structural prediction and chemical inhibition of the human mitochondrial pyruvate carrier protein heterodimer complex.
Hadfield CM, Walker JK, Dastvan R, Arnatt C, McCommis KS
bioRxiv : the preprint server for biology 2024
The Role of Mitochondrial Pyruvate Carrier in Neurological Disorders.
Liu Y, Yu X, Jiang W
Molecular neurobiology 2024
Mitochondrial pyruvate carrier 2 mitigates acute kidney injury via sustaining mitochondrial metabolism
Wu L, Li Q, Lu F, Qian L, Pan Y, Chen C, Huang Z, Duan S, Zhang B, Liang H, Xing C, Mao H, Yuan Y
International Journal of Biological Sciences 2024
UK5099 Inhibits the NLRP3 Inflammasome Independently of its Long‐Established Target Mitochondrial Pyruvate Carrier
Ran L, Chen M, Ye J, Zhang S, Luo Z, Bai T, Qian C, Zhou Q, Shan M, Chu Y, Herrmann J, Li Q, Wang F
Advanced Science 2024
The mitochondrial pyruvate carrier complex potentiates the efficacy of proteasome inhibitors in multiple myeloma.
Findlay S, Nair R, Merrill RA, Kaiser Z, Cajelot A, Aryanpour Z, Heath J, St-Louis C, Papadopoli D, Topisirovic I, St-Pierre J, Sebag M, Kesarwala AH, Hulea L, Taylor EB, Shanmugam M, Orthwein A
Blood Advances 2023
Fifty years of the mitochondrial pyruvate carrier: New insights into its structure, function, and inhibition.
Tavoulari S, Sichrovsky M, Kunji ERS
Acta physiologica (Oxford, England) 2023
Paradoxical neuronal hyperexcitability in a mouse model of mitochondrial pyruvate import deficiency
A Rossa, M Laporte, S Astori, T Marissal, S Montessuit, P Sheshadri, E Ramos-Fernández, P Mendez, A Khani, C Quairiaux, E Taylor, J Rutter, J Nunes, A Carleton, M Duchen, C Sandi, J Martinou
eLife 2022
The mitochondrial pyruvate carrier at the crossroads of intermediary metabolism
Yiew NK, Finck BN
American journal of physiology. Endocrinology and metabolism 2022
Ketogenic Diet Treatment of Defects in the Mitochondrial Malate Aspartate Shuttle and Pyruvate Carrier.
Bölsterli BK, Boltshauser E, Palmieri L, Spenger J, Brunner-Krainz M, Distelmaier F, Freisinger P, Geis T, Gropman AL, Häberle J, Hentschel J, Jeandidier B, Karall D, Keren B, Klabunde-Cherwon A, Konstantopoulou V, Kottke R, Lasorsa FM, Makowski C, Mignot C, O'Gorman Tuura R, Porcelli V, Santer R, Sen K, Steinbrücker K, Syrbe S, Wagner M, Ziegler A, Zöggeler T, Mayr JA, Prokisch H, Wortmann SB
Nutrients 2022
MPC2 variants disrupt mitochondrial pyruvate metabolism and cause an early-onset mitochondriopathy
Pujol C, Lebigot E, Gaignard P, Galai S, Kraoua I, Bault JP, Dard R, Youssef-Turki IB, Omar S, Boutron A, Wai T, Slama A
Brain : a journal of neurology 2022
Ketone Bodies in the Brain Beyond Fuel Metabolism: From Excitability to Gene Expression and Cell Signaling
D García-Rodríguez, A Giménez-Cassina
Frontiers in molecular neuroscience 2021
Dual-process brain mitochondria isolation preserves function and clarifies protein composition
MF Noterman, K Chaubey, K Lin-Rahardja, AM Rajadhyaksha, AA Pieper, EB Taylor
Proceedings of the National Academy of Sciences 2021
Learning from Yeast about Mitochondrial Carriers
M Mentel, P Chovančíková, I Zeman, P Polčic
Microorganisms 2021
Structural Insights into the Human Mitochondrial Pyruvate Carrier Complexes
L Xu, C Phelix, L Chen
Journal of Chemical Information and Modeling 2021
The Multifaceted Pyruvate Metabolism: Role of the Mitochondrial Pyruvate Carrier
J Zangari, F Petrelli, B Maillot, JC Martinou
Biomolecules 2020
Mitochondrial Pyruvate Carrier Function in Health and Disease across the Lifespan
JL Buchanan, EB Taylor
Biomolecules 2020
NADPH and Glutathione Redox Link TCA Cycle Activity to Endoplasmic Reticulum Homeostasis
ER Gansemer, KS McCommis, M Martino, AQ King-McAlpin, MJ Potthoff, BN Finck, EB Taylor, DT Rutkowski
iScience 2020
20,000 picometers under the OMM : diving into the vastness of mitochondrial metabolite transport
CN Cunningham, J Rutter
EMBO reports 2020
Insights on the Quest for the Structure–Function Relationship of the Mitochondrial Pyruvate Carrier
JE Quesñay, NL Pollock, RS Nagampalli, SC Lee, V Balakrishnan, SM Dias, I Moraes, TR Dafforn, AL Ambrosio
Biology : open access journal 2020
Sequence Features of Mitochondrial Transporter Protein Families
G Gyimesi, MA Hediger
Biomolecules 2020
Mitochondrial diseases: expanding the diagnosis in the era of genetic testing
RP Saneto
2020
Metabolite regulation of the mitochondrial calcium uniporter channel
D Tomar, JW Elrod
Cell Calcium 2020
Targeting the Mitochondrial Pyruvate Carrier for Neuroprotection
BL Tang
Brain Sciences 2019
Disrupting Mitochondrial Pyruvate Uptake Directs Glutamine into the TCA Cycle away from Glutathione Synthesis and Impairs Hepatocellular Tumorigenesis
SC Tompkins, RD Sheldon, AJ Rauckhorst, MF Noterman, SR Solst, JL Buchanan, KA Mapuskar, AD Pewa, LR Gray, L Oonthonpan, A Sharma, DA Scerbo, AJ Dupuy, DR Spitz, EB Taylor
Cell Reports 2019
Impaired skeletal muscle mitochondrial pyruvate uptake rewires glucose metabolism to drive whole-body leanness
A Sharma, L Oonthonpan, RD Sheldon, AJ Rauckhorst, Z Zhu, SC Tompkins, K Cho, WJ Grzesik, LR Gray, DA Scerbo, AD Pewa, EM Cushing, MC Dyle, JE Cox, C Adams, BS Davies, RK Shields, AW Norris, G Patti, LV Zingman, EB Taylor
eLife 2019

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