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PMID: 12864749 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S. Review

AMPK as a metabolic switch in rat muscle, liver and adipose tissue after exercise.

Acta physiologica Scandinavica ·Vol. 178 ·No. 4 ·2003-08-00 ·Pages 435-42

Ruderman NB, Park H, Kaushik VK, Dean D, Constant S, Prentki M, Saha AK

Abstract

An increasing body of evidence has revealed that activation of adenosine monophosphate (AMP)-activated protein kinase (AMPK)-activated protein kinase increases fatty acid oxidation by lowering the concentration of malonyl coenzyme A (CoA), an inhibitor of carnitine palmitoyl transferase 1. Studies carried out primarily in skeletal muscle suggest that AMPK modulates the concentration of malonyl CoA by concurrently phosphorylating and inhibiting acetyl CoA carboxylase (ACC), the rate limiting enzyme in malonyl CoA synthesis, and phosphorylating and activating malonyl CoA decarboxylase (MCD), an enzyme involved in its degradation. We have recently observed that AMPK and MCD activities are increased and ACC activity diminished in skeletal muscle, liver and, surprisingly, in adipose tissue 30 min following exercise (treadmill run) in normal rats. In liver and adipose tissue these changes were associated with a decrease in the activity of glycerol-3-phosphate acyltransferase (GPAT), which catalyses the first committed reaction in glycerolipid synthesis and, which like ACC, is phosphorylated and inhibited by AMPK. Similar changes in ACC, MCD and GPAT were observed following the administration of 5-aminoimidazole 4-carboxamide-riboside (AICAR), further indicating that the exercise-induced alterations in these enzymes were AMPK-mediated. (1) AMPK plays a major role in regulating lipid metabolism in multiple tissues following exercise. (2) The net effect of its activation is to increase fatty acid oxidation and diminish glycerolipid synthesis. (3) The relevance of these findings to the regulation of muscle glycogen repletion in the post-exercise state and to the demonstrated ability of AMPK activation to decrease adiposity and increase insulin sensitivity in rodents remains to be determined.

MeSH Terms
Acetyl-CoA Carboxylase/metabolism Adipose Tissue/drug effects,metabolism Aminoimidazole Carboxamide/analogs & derivatives,pharmacology Animals Cyclic AMP-Dependent Protein Kinases/metabolism Glycerol-3-Phosphate O-Acyltransferase/metabolism Hypoglycemic Agents/pharmacology Liver/drug effects,metabolism Malonyl Coenzyme A/metabolism Muscle, Skeletal/drug effects,metabolism Physical Conditioning, Animal/physiology Rats Ribonucleotides/pharmacology
Chemicals
Hypoglycemic Agents Ribonucleotides Aminoimidazole Carboxamide Malonyl Coenzyme A Glycerol-3-Phosphate O-Acyltransferase Cyclic AMP-Dependent Protein Kinases Acetyl-CoA Carboxylase AICA ribonucleotide
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Ruderman N B
Diabetes Unit, Section of Endocrinology and Department of Medicine, Boston University Medical Center, Boston, MA 02118, USA.
Park H
Kaushik V K
Dean D
Constant S
Prentki M
Saha A K
Article Info
Journal
Acta physiologica Scandinavica
Abbr.
Acta Physiol Scand
ISSN
0001-6772
Published
2003-08-00
Pages
435-42
Language
English
Region
England
NLM ID
0370362
Subset
IM
Grants
NIDDK NIH HHS · DK19514 · United States
NIDDK NIH HHS · DK49147 · United States
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