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PMID: 17144882 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Review

Fatty acid metabolism in adipose tissue, muscle and liver in health and disease.

Essays in biochemistry ·Vol. 42 ·2006-00-00 ·Pages 89-103

Frayn KN, Arner P, Yki-Järvinen H

Abstract

Fat is the largest energy reserve in mammals. Most tissues are involved in fatty acid metabolism, but three are quantitatively more important than others: adipose tissue, skeletal muscle and liver. Each of these tissues has a store of triacylglycerol that can be hydrolysed (mobilized) in a regulated way to release fatty acids. In the case of adipose tissue, these fatty acids may be released into the circulation for delivery to other tissues, whereas in muscle they are a substrate for oxidation and in liver they are a substrate for re-esterification within the endoplasmic reticulum to make triacylglycerol that will be secreted as very-low-density lipoprotein. These pathways are regulated, most clearly in the case of adipose tissue. Adipose tissue fat storage is stimulated, and fat mobilization suppressed, by insulin, leading to a drive to store energy in the fed state. Muscle fatty acid metabolism is more sensitive to physical activity, during which fatty acid utilization from extracellular and intracellular sources may increase enormously. The uptake of fat by the liver seems to depend mainly upon delivery in the plasma, but the secretion of very-low-density lipoprotein triacylglycerol is suppressed by insulin. There is clearly cooperation amongst the tissues, so that, for instance, adipose tissue fat mobilization increases to meet the demands of skeletal muscle during exercise. When triacylglycerol accumulates excessively in skeletal muscle and liver, sometimes called ectopic fat deposition, then the condition of insulin resistance arises. This may reflect a lack of exercise and an excess of fat intake.

MeSH Terms
Adipose Tissue/metabolism Disease Exercise/physiology Fatty Acids/metabolism Humans Lipoprotein Lipase/metabolism Liver/metabolism Models, Biological Muscle, Skeletal/metabolism Triglycerides/metabolism
Chemicals
Fatty Acids Triglycerides Lipoprotein Lipase
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Frayn Keith N
Oxford Centre for Diabetes, Endocrinology and Metabolism, University of Oxford, Churchill Hospital, Oxford OX3 7LJ, UK. keith.frayn@oxlip.ox.ac.uk
Arner Peter
Yki-Järvinen Hannele
Article Info
Journal
Essays in biochemistry
Abbr.
Essays Biochem
ISSN
0071-1365
Published
2006-00-00
Pages
89-103
Language
English
Region
England
NLM ID
0043306
Subset
IM
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