Literature DB >> 26344101

Loss of Mitochondrial Pyruvate Carrier 2 in the Liver Leads to Defects in Gluconeogenesis and Compensation via Pyruvate-Alanine Cycling.

Kyle S McCommis1, Zhouji Chen1, Xiaorong Fu2, William G McDonald3, Jerry R Colca3, Rolf F Kletzien3, Shawn C Burgess2, Brian N Finck4.   

Abstract

Pyruvate transport across the inner mitochondrial membrane is believed to be a prerequisite for gluconeogenesis in hepatocytes, which is important for the maintenance of normoglycemia during prolonged food deprivation but also contributes to hyperglycemia in diabetes. To determine the requirement for mitochondrial pyruvate import in gluconeogenesis, mice with liver-specific deletion of mitochondrial pyruvate carrier 2 (LS-Mpc2(-/-)) were generated. Loss of MPC2 impaired, but did not completely abolish, hepatocyte conversion of labeled pyruvate to TCA cycle intermediates and glucose. Unbiased metabolomic analyses of livers from fasted LS-Mpc2(-/-) mice suggested that alterations in amino acid metabolism, including pyruvate-alanine cycling, might compensate for the loss of MPC2. Indeed, inhibition of pyruvate-alanine transamination further reduced mitochondrial pyruvate metabolism and glucose production by LS-Mpc2(-/-) hepatocytes. These data demonstrate an important role for MPC2 in controlling hepatic gluconeogenesis and illuminate a compensatory mechanism for circumventing a block in mitochondrial pyruvate import.
Copyright © 2015 Elsevier Inc. All rights reserved.

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Year:  2015        PMID: 26344101      PMCID: PMC4598280          DOI: 10.1016/j.cmet.2015.07.028

Source DB:  PubMed          Journal:  Cell Metab        ISSN: 1550-4131            Impact factor:   27.287


  45 in total

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Authors:  B Casetta; D Tagliacozzi; B Shushan; G Federici
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Authors:  Brian N Finck; Matthew C Gropler; Zhouji Chen; Teresa C Leone; Michelle A Croce; Thurl E Harris; John C Lawrence; Daniel P Kelly
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6.  The mitochondrial pyruvate carrier. Kinetics and specificity for substrates and inhibitors.

Authors:  A P Halestrap
Journal:  Biochem J       Date:  1975-04       Impact factor: 3.857

7.  Alterations in hepatic metabolism in fld mice reveal a role for lipin 1 in regulating VLDL-triacylglyceride secretion.

Authors:  Zhouji Chen; Matthew C Gropler; Jin Norris; John C Lawrence; Thurl E Harris; Brian N Finck
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8.  Alanine aminotransferase isoenzymes: molecular cloning and quantitative analysis of tissue expression in rats and serum elevation in liver toxicity.

Authors:  Rong-Ze Yang; Soohyun Park; William J Reagan; Rick Goldstein; Shao Zhong; Michael Lawton; Francis Rajamohan; Kun Qian; Li Liu; Da-Wei Gong
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Authors:  Jerry R Colca; William G McDonald; Daniel J Waldon; Joseph W Leone; June M Lull; Carol A Bannow; Eric T Lund; W Rodney Mathews
Journal:  Am J Physiol Endocrinol Metab       Date:  2003-10-21       Impact factor: 4.310

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Authors:  Leonardo C N Lima; Gisele D Buss; Emy L Ishii-Iwamoto; Clairce Salgueiro-Pagadigorria; Jurandir Fernando Comar; Adelar Bracht; Jorgete Constantin
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  83 in total

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Review 2.  Pyruvate and Metabolic Flexibility: Illuminating a Path Toward Selective Cancer Therapies.

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3.  Mitochondrial Pyruvate Import Promotes Long-Term Survival of Antibody-Secreting Plasma Cells.

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Journal:  Immunity       Date:  2016-07-05       Impact factor: 31.745

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5.  Pyruvate-Carboxylase-Mediated Anaplerosis Promotes Antioxidant Capacity by Sustaining TCA Cycle and Redox Metabolism in Liver.

Authors:  David A Cappel; Stanisław Deja; João A G Duarte; Blanka Kucejova; Melissa Iñigo; Justin A Fletcher; Xiaorong Fu; Eric D Berglund; Tiemin Liu; Joel K Elmquist; Suntrea Hammer; Prashant Mishra; Jeffrey D Browning; Shawn C Burgess
Journal:  Cell Metab       Date:  2019-04-18       Impact factor: 27.287

6.  The beneficial metabolic effects of insulin sensitizers are not attenuated by mitochondrial pyruvate carrier 2 hypomorphism.

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Review 8.  Functional Properties of the Mitochondrial Carrier System.

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Review 10.  Mitochondria and Reactive Oxygen Species in Aging and Age-Related Diseases.

Authors:  Carlotta Giorgi; Saverio Marchi; Ines C M Simoes; Ziyu Ren; Giampaolo Morciano; Mariasole Perrone; Paulina Patalas-Krawczyk; Sabine Borchard; Paulina Jędrak; Karolina Pierzynowska; Jędrzej Szymański; David Q Wang; Piero Portincasa; Grzegorz Węgrzyn; Hans Zischka; Pawel Dobrzyn; Massimo Bonora; Jerzy Duszynski; Alessandro Rimessi; Agnieszka Karkucinska-Wieckowska; Agnieszka Dobrzyn; Gyorgy Szabadkai; Barbara Zavan; Paulo J Oliveira; Vilma A Sardao; Paolo Pinton; Mariusz R Wieckowski
Journal:  Int Rev Cell Mol Biol       Date:  2018-06-22       Impact factor: 6.813

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