2007
DOI: 10.1038/nature06161
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Structural basis for AMP binding to mammalian AMP-activated protein kinase

Abstract: AMP-activated protein kinase (AMPK) regulates cellular metabolism in response to the availability of energy and is therefore a target for type II diabetes treatment. It senses changes in the ratio of AMP/ATP by binding both species in a competitive manner. Thus, increases in the concentration of AMP activate AMPK resulting in the phosphorylation and differential regulation of a series of downstream targets that control anabolic and catabolic pathways. We report here the crystal structure of the regulatory frag… Show more

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Cited by 519 publications
(572 citation statements)
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“…AMPK is a regulator of cellular and systemic energy homeostasis and acts as a sensor of energy status (Kola et al, 2006;Xiao et al, 2007). Once activated, AMPK leads to a switch from anabolic to catabolic pathways; with the aim of restoring energy balance, ATP production is increased and ATP-utilising pathways are inhibited.…”
Section: Ampk and The Orexigenic Signaling Pathway Of Ghrelinmentioning
confidence: 99%
“…AMPK is a regulator of cellular and systemic energy homeostasis and acts as a sensor of energy status (Kola et al, 2006;Xiao et al, 2007). Once activated, AMPK leads to a switch from anabolic to catabolic pathways; with the aim of restoring energy balance, ATP production is increased and ATP-utilising pathways are inhibited.…”
Section: Ampk and The Orexigenic Signaling Pathway Of Ghrelinmentioning
confidence: 99%
“…As in the original structure that lacked the kinase domain (Xiao et al 2007), the CTDs of a and b associate closely together, but in the new structure they also interact with the activation loop of the kinase domain, hindering access to Thr172 of protein phosphatases that would dephosphorylate the residue. The kinase domain and the a-CTD, at opposite ends of the a subunit, are connected by a long extended peptide that wraps around the g subunit, resembling two "arms" with the hands clasped together, holding the g subunit in a tight embrace (Fig.…”
Section: Mammalian Ampk-structure and Regulationmentioning
confidence: 99%
“…ADP binding at site 3 also appears to promote phosphorylation of Thr172 by upstream kinases (Oakhill et al 2011). Site 4, whose function remains unclear, binds AMP very tightly; AMP is already present in this site when recombinant AMPK is purified from E. coli, and it does not exchange with ADP or ATP (Xiao et al 2007). …”
Section: Mammalian Ampk-structure and Regulationmentioning
confidence: 99%
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