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      Lack of mitochondria-generated acetyl-CoA by pyruvate dehydrogenase complex downregulates gene expression in the hepatic de novo lipogenic pathway

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          Abstract

          During the absorptive state, the liver stores excess glucose as glycogen and synthesizes fatty acids for triglyceride synthesis for export as very low density lipoproteins. For de novo synthesis of fatty acids from glucose, the mitochondrial pyruvate dehydrogenase complex (PDC) is the gatekeeper for the generation of acetyl-CoA from glucose-derived pyruvate. Here, we tested the hypothesis that limiting the supply of PDC-generated acetyl-CoA from glucose would have an impact on expression of key genes in the lipogenic pathway. In the present study, although the postnatal growth of liver-specific PDC-deficient (L-PDCKO) male mice was largely unaltered, the mice developed hyperinsulinemia with lower blood glucose levels in the fed state. Serum and liver lipid triglyceride and cholesterol levels remained unaltered in L-PDCKO mice. Expression of several key genes ( ACL, ACC1) in the lipogenic pathway and their upstream regulators ( LXR, SREBP1, ChREBP) as well as several genes in glucose metabolism ( Pklr, G6pd2, Pck1) and fatty acid oxidation ( FAT, Cpt1a) was downregulated in livers from L-PDCKO mice. Interestingly, there was concomitant upregulation of lipogenic genes in adipose tissue from L-PDCKO mice. Although, the total hepatic acetyl-CoA content remained unaltered in L-PDCKO mice, modified acetylation profiles of proteins in the nuclear compartment suggested an important role for PDC-generated acetyl-CoA in gene expression in de novo fatty acid synthesis in the liver. This finding has important implications for the regulation of hepatic lipid synthesis in pathological states.

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          Author and article information

          Journal
          Am J Physiol Endocrinol Metab
          Am. J. Physiol. Endocrinol. Metab
          ajpendo
          ajpendo
          AJPENDO
          American Journal of Physiology - Endocrinology and Metabolism
          American Physiological Society (Bethesda, MD )
          0193-1849
          1522-1555
          10 May 2016
          1 July 2016
          1 July 2017
          : 311
          : 1
          : E117-E127
          Affiliations
          [1] 1Department of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, and
          [2] 2Department of Exercise and Nutrition Sciences, School of Public Health and Health Professions, University at Buffalo, Buffalo, New York
          Author notes
          Address for reprint requests and other correspondence: M. S. Patel, Dept. of Biochemistry, Jacobs School of Medicine and Biomedical Sciences, 140 Farber Hall, 3435 Main St., Univ. at Buffalo, Buffalo, NY 14214 (e-mail: mspatel@ 123456buffalo.edu ).
          Article
          PMC4967143 PMC4967143 4967143 E-00064-2016
          10.1152/ajpendo.00064.2016
          4967143
          27166281
          ce3b9615-af19-4e56-ac8d-b487f0015bf5
          Copyright © 2016 the American Physiological Society
          History
          : 19 February 2016
          : 3 May 2016
          Funding
          Funded by: 100000062 HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
          Award ID: DK20478
          Categories
          Articles

          liver-specific pyruvate dehydrogenase complex-deficient mice,acetyl-CoA,gene expression,lipogenic pathway,nuclear protein acetylation

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