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Nutritional modulation of heart failure in mitochondrial pyruvate carrier-deficient mice.

Citation
McCommis, K. S., et al. “Nutritional Modulation Of Heart Failure In Mitochondrial Pyruvate Carrier-Deficient Mice.”. Nature Metabolism, pp. 1232-1247.
Center Washington University in St Louis
Author Kyle S McCommis, Attila Kovacs, Carla J Weinheimer, Trevor M Shew, Timothy R Koves, Olga R Ilkayeva, Dakota R Kamm, Kelly D Pyles, Todd King, Richard L Veech, Brian J DeBosch, Deborah M Muoio, Richard W Gross, Brian N Finck
Abstract

The myocardium is metabolically flexible; however, impaired flexibility is associated with cardiac dysfunction in conditions including diabetes and heart failure. The mitochondrial pyruvate carrier (MPC) complex, composed of MPC1 and MPC2, is required for pyruvate import into the mitochondria. Here we show that MPC1 and MPC2 expression is downregulated in failing human and mouse hearts. Mice with cardiac-specific deletion of Mpc2 (CS-MPC2) exhibited normal cardiac size and function at 6 weeks old, but progressively developed cardiac dilation and contractile dysfunction, which was completely reversed by a high-fat, low-carbohydrate ketogenic diet. Diets with higher fat content, but enough carbohydrate to limit ketosis, also improved heart failure, while direct ketone body provisioning provided only minor improvements in cardiac remodelling in CS-MPC2 mice. An acute fast also improved cardiac remodelling. Together, our results reveal a critical role for mitochondrial pyruvate use in cardiac function, and highlight the potential of dietary interventions to enhance cardiac fat metabolism to prevent or reverse cardiac dysfunction and remodelling in the setting of MPC deficiency.

Year of Publication
2020
Journal
Nature metabolism
Volume
2
Issue
11
Number of Pages
1232-1247
Date Published
12/2020
ISSN Number
2522-5812
DOI
10.1038/s42255-020-00296-1
Alternate Journal
Nat Metab
PMID
33106690
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