The AMP‐Activated Protein Kinase

АМФ-активируемая протеинкиназа
D. Grahame Hardie, David Carling
1997-06-01

AMP-activated protein kinaseAMPK/SNF1 protein-kinase cascadeAcetyl-CoA carboxylaseCellular energy stressFatty acid oxidation
A single entity, the AMP-activated protein kinase (AMPK), phosphorylates and regulates in vivo hydroxymethylglutaryl-CoA reductase and acetyl-CoA carboxylase (key regulatory enzymes of sterol synthesis and fatty acid synthesis, respectively), and probably many additional targets. The kinase is activated by high AMP and low ATP via a complex mechanism, which involves allosteric regulation, promotion of phosphorylation by an upstream protein kinase (AMPK kinase), and inhibition of dephosphorylation. This protein-kinase cascade represents a sensitive system, which is activated by cellular stresses that deplete ATP, and thus acts like a cellular fuel gauge. Our central hypothesis is that, when it detects a 'low-fuel' situation, it protects the cell by switching off ATP-consuming pathways (e.g. fatty acid synthesis and sterol synthesis) and switching on alternative pathways for ATP generation (e.g. fatty acid oxidation). Native AMP-activated protein kinase is a heterotrimer consisting of a catalytic alpha subunit, and beta and gamma subunits, which are also essential for activity. All three subunits have homologues in budding yeast, which are components of the SNF1 protein-kinase complex. SNF1 is activated by glucose starvation (which in yeast leads to ATP depletion) and genetic studies have shown that it is involved in derepression of glucose-repressed genes. This raises the intriguing possibility that AMPK may regulate gene expression in mammals. AMPK/SNF1 homologues are found in higher plants, and this protein-kinase cascade appears to be an ancient system which evolved to protect cells against the effects of nutritional or environmental stress.
1
AMPK activation responds to high AMP and low ATP through allosteric regulation, upstream kinase phosphorylation, and inhibited dephosphorylation.
2
AMPK functions as a cellular fuel gauge, shutting down ATP-consuming biosynthetic pathways and promoting ATP-generating pathways such as fatty-acid oxidation during energy stress.
3
AMPK phosphorylates and regulates HMG-CoA reductase and acetyl-CoA carboxylase, controlling sterol and fatty-acid synthesis.
4
AMPK/SNF1-related kinase complexes occur in yeast and plants, suggesting an evolutionarily ancient mechanism for adaptation to nutritional and environmental stress and possible regulation of mammalian gene expression.
5
Native AMPK is a heterotrimeric complex comprising catalytic alpha and essential beta and gamma subunits.

AMP-activated protein kinase (AMPK) and its homologous protein-kinase complexes across mammals, budding yeast, and higher plants

AMPK activation, regulation, and cellular energy-stress responses, including control of anabolic and catabolic pathways and possible gene-expression regulation

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1997-06-01
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D. Grahame Hardie
David Carling
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