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      Role of AMP-activated protein kinase in mechanism of metformin action.

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          Abstract

          Metformin is a widely used drug for treatment of type 2 diabetes with no defined cellular mechanism of action. Its glucose-lowering effect results from decreased hepatic glucose production and increased glucose utilization. Metformin's beneficial effects on circulating lipids have been linked to reduced fatty liver. AMP-activated protein kinase (AMPK) is a major cellular regulator of lipid and glucose metabolism. Here we report that metformin activates AMPK in hepatocytes; as a result, acetyl-CoA carboxylase (ACC) activity is reduced, fatty acid oxidation is induced, and expression of lipogenic enzymes is suppressed. Activation of AMPK by metformin or an adenosine analogue suppresses expression of SREBP-1, a key lipogenic transcription factor. In metformin-treated rats, hepatic expression of SREBP-1 (and other lipogenic) mRNAs and protein is reduced; activity of the AMPK target, ACC, is also reduced. Using a novel AMPK inhibitor, we find that AMPK activation is required for metformin's inhibitory effect on glucose production by hepatocytes. In isolated rat skeletal muscles, metformin stimulates glucose uptake coincident with AMPK activation. Activation of AMPK provides a unified explanation for the pleiotropic beneficial effects of this drug; these results also suggest that alternative means of modulating AMPK should be useful for the treatment of metabolic disorders.

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          Author and article information

          Journal
          J. Clin. Invest.
          The Journal of clinical investigation
          American Society for Clinical Investigation
          0021-9738
          0021-9738
          Oct 2001
          : 108
          : 8
          Affiliations
          [1 ] Department of Molecular Endocrinology, Merck Research Laboratories, Rahway, New Jersey 07065, USA. gaochao_zhou@merck.com
          Article
          10.1172/JCI13505
          209533
          11602624
          d481f732-41ca-4840-9a05-25f186b74556
          History

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