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AMP kinase activation with AICAR simultaneously increases fatty acid and glucose oxidation in resting rat soleus muscle
Author(s) -
Smith Angela C.,
Bruce Clinton R.,
Dyck David J.
Publication year - 2005
Publication title -
the journal of physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.802
H-Index - 240
eISSN - 1469-7793
pISSN - 0022-3751
DOI - 10.1113/jphysiol.2004.081679
Subject(s) - medicine , ampk , chemistry , endocrinology , beta oxidation , activator (genetics) , fatty acid , glucose uptake , pyruvate dehydrogenase complex , protein kinase a , amp activated protein kinase , skeletal muscle , biochemistry , enzyme , insulin , biology , receptor
5‐Amino‐4‐imidazolecarboxamide riboside (AICAR), a pharmacological activator of AMP‐activated protein kinase (AMPK), acutely stimulates glucose uptake and fatty acid (FA) oxidation in skeletal muscle. However, it is not fully understood whether AICAR‐induced changes in glucose oxidation are secondary to changes in FA oxidation (i.e. glucose fatty acid cycle), or what role AMPK may be playing in the regulation of intramuscular triacylglycerol (TAG) esterification and hydrolysis. We examined the acute (60 min) effects of AICAR (2 m m ) on FA metabolism, glucose oxidation and pyruvate dehydrogenase (PDH) activation in isolated resting rat soleus muscle strips exposed to two different FA concentrations (low fatty acid, LFA, 0.2 m m ; high fatty acid, HFA, 1 m m ). AICAR significantly increased AMPK α2 activity (+192%; P < 0.05) over 60 min, and simultaneously increased both FA (LFA: +33%, P < 0.05; HFA: +36%, P < 0.05) and glucose (LFA: +105%, P < 0.05; HFA: +170, P < 0.001) oxidation regardless of FA availability. While there were no changes in TAG esterification, AICAR did increase the ratio of FA partitioned to oxidation relative to TAG esterification (LFA: +15%, P < 0.05; HFA: +49%, P < 0.05). AICAR had no effect on endogenous TAG hydrolysis and oxidation in resting soleus. The stimulation of glucose oxidation with AICAR was associated with an increase in PDH activation (+126%; P < 0.05) but was without effect on pyruvate, an allosteric activator of the PDH complex, suggesting that AMPK may stimulate PDH directly. In conclusion, AMPK appears to be an important regulator of both FA metabolism and glucose oxidation in resting skeletal muscle.

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