Regulation of AMP-activated protein kinase by a pseudosubstrate sequence on the γ subunit

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Abstract

The AMP-activated protein kinase (AMPK) system monitors cellular energy status by sensing AMP and ATP, and is a key regulator of energy balance at the cellular and whole-body levels. AMPK exists as heterotrimeric αβγ complexes, and the γ subunits contain two tandem domains that bind the regulatory nucleotides. There is a sequence in the first of these domains that is conserved in γ subunit homologues in all eukaryotes, and which resembles the sequence around sites phosphorylated on target proteins of AMPK, except that it has a non-phosphorylatable residue in place of serine. We propose that in the absence of AMP this pseudosubstrate sequence binds to the active site groove on the α subunit, preventing phosphorylation by the upstream kinase, LKB1, and access to downstream targets. Binding of AMP causes a conformational change that prevents this interaction and relieves the inhibition. We present several lines of evidence supporting this hypothesis. © 2007 European Molecular Biology Organization | All Rights Reserved.

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Scott, J. W., Ross, F. A., Liu, J. K. D., & Hardie, D. G. (2007). Regulation of AMP-activated protein kinase by a pseudosubstrate sequence on the γ subunit. EMBO Journal, 26(3), 806–815. https://doi.org/10.1038/sj.emboj.7601542

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