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PMID: 10825155 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Thermogenic responses in brown fat cells are fully UCP1-dependent. UCP2 or UCP3 do not substitute for UCP1 in adrenergically or fatty scid-induced thermogenesis.

The Journal of biological chemistry ·Vol. 275 ·No. 33 ·2000-08-18 ·Pages 25073-81

Matthias A, Ohlson KB, Fredriksson JM, Jacobsson A, Nedergaard J, Cannon B

Abstract

To examine the thermogenic significance of the classical uncoupling protein-1 (UCP1), the thermogenic potential of brown adipocytes isolated from UCP1-ablated mice was investigated. Ucp1(-/-) cells had a basal metabolic rate identical to wild-type; the mitochondria within them were coupled to the same degree. The response to norepinephrine in wild-type cells was robust ( approximately 10-fold increase in thermogenesis); Ucp1(-/-) cells only responded approximately 3% of this. Ucp1(-/-) cells were as potent as wild-type in norepinephrine-induced cAMP accumulation and lipolysis and had a similar mitochondrial respiratory complement. In wild-type cells, fatty acids induced a thermogenic response similar to norepinephrine, but fatty acids (and retinoate) were practically without effect in Ucp1(-/-) cells. It is concluded that no other adrenergically induced thermogenic mechanism exists in brown adipocytes except that mediated by UCP1 and that entopic expression of UCP1 does not lead to overt innate uncoupling, and it is suggested that fatty acids are transformed to an intracellular physiological activator of UCP1. High expression of UCP2 and UCP3 in the tissue was not associated with an overt innate highly uncoupled state of mitochondria within the cells, nor with an ability of norepinephrine or endo- or exogenous fatty acids to induce uncoupled respiration in the cells. Thus, UCP1 remains the only physiologically potent thermogenic uncoupling protein in these cells.

MeSH Terms
Adipocytes/metabolism Adipose Tissue, Brown/metabolism Adrenergic Agonists/metabolism Animals Carbonyl Cyanide p-Trifluoromethoxyphenylhydrazone/pharmacology Carrier Proteins/genetics,physiology Cells, Cultured Cyclic AMP/metabolism Exons Fatty Acids/metabolism Glycerol/metabolism Ion Channels Laurates/pharmacology Membrane Proteins/genetics,physiology Membrane Transport Proteins Mice Mice, Inbred C57BL Mitochondria/metabolism Mitochondrial Proteins Models, Biological Norepinephrine/metabolism Oleic Acid/pharmacology Oxygen Consumption/drug effects,genetics Proteins/genetics,physiology Recombination, Genetic Temperature Tretinoin/pharmacology Uncoupling Agents/pharmacology Uncoupling Protein 1 Uncoupling Protein 2 Uncoupling Protein 3
Chemicals
Adrenergic Agonists Carrier Proteins Fatty Acids Ion Channels Laurates Membrane Proteins Membrane Transport Proteins Mitochondrial Proteins Proteins Ucp1 protein, mouse Ucp2 protein, mouse Ucp3 protein, mouse Uncoupling Agents Uncoupling Protein 1 Uncoupling Protein 2 Uncoupling Protein 3 Oleic Acid Carbonyl Cyanide p-Trifluoromethoxyphenylhydrazone Tretinoin Cyclic AMP Glycerol Norepinephrine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Matthias A
Wenner-Gren Institute, The Arrhenius Laboratories F3, Stockholm University, Sweden.
Ohlson K B
Fredriksson J M
Jacobsson A
Nedergaard J
Cannon B
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2000-08-18
Pages
25073-81
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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