4.7 Article

The mitochondrial pyruvate carrier mediates high fat diet-induced increases in hepatic TCA cycle capacity

Journal

MOLECULAR METABOLISM
Volume 6, Issue 11, Pages 1468-1479

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.molmet.2017.09.002

Keywords

Mitochondrial pyruvate carrier (MPC); Liver; Diabetes; Gluconeogenesis; Fibrosis; Inflammation

Funding

  1. NIH [R01 DK104998, R00 AR059190, R01 DK078184]
  2. Robert A. Welch Foundation [I-1804, F32 DK101183, T32 HL007121, T32 HL007638, T32 HL007344, T32 GM067795, P30CA086862]

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Objective: Excessive hepatic gluconeogenesis is a defining feature of type 2 diabetes (T2D). Most gluconeogenic flux is routed through mitochondria. The mitochondria! pyruvate carrier (MPC) transports pyruvate from the cytosol into the mitochondrial matrix, thereby gating pyruvate-driven gluconeogenesis. Disruption of the hepatocyte MPC attenuates hyperglycemia in mice during high fat diet (HFD)-induced obesity but exerts minimal effects on glycemia in normal chow diet (NCD)-fed conditions. The goal of this investigation was to test whether hepatocyte MPC disruption provides sustained protection from hyperglycemia during long-term HFD and the differential effects of hepatocyte MPC disruption on TCA cycle metabolism in NCD versus HFD conditions. Method: We utilized long-term high fat feeding, serial measurements of postabsorptive blood glucose and metabolomic profiling and C-13-lactate/C-13-pyruvate tracing to investigate the contribution of the MPC to hyperglycemia and altered hepatic TCA cycle metabolism during HFD-induced obesity. Results: Hepatocyte MPC disruption resulted in long-term attenuation of hyperglycemia induced by HFD. HFD increased hepatic mitochondrial pyruvate utilization and TCA cycle capacity in an MPC-dependent manner. Furthermore, MPC disruption decreased progression of fibrosis and levels of transcript markers of inflammation. Conclusions: By contributing to chronic hyperglycemia, fibrosis, and TCA cycle expansion, the hepatocyte MPC is a key mediator of the pathophysiology induced in the HFD model of T2D. (C) 2017 The Authors. Published by Elsevier GmbH.

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