Mechanism and cellular actions of the potent AMPK inhibitor BAY-3827.

Fraguas Bringas, Conchita; Ahangar, Mohd Syed; Cuenco, Joyceline; Liu, Hongling; Addinsall, Alex B; Lindahl, Maria; Ovens, Ashley J; Febbraio, Mark A et al. · Sci Adv · 2025

basic_science · Level V

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Abstract

Inhibition of adenosine 5'-monophosphate (AMP)-activated protein kinase (AMPK) is under increasing investigation for its therapeutic potential in many diseases. Existing AMPK inhibitors are however limited, with poor selectivity and substantial off-target effects. Here, we provide mechanistic insights and describe the cellular selectivity of the recently identified AMPK inhibitor BAY-3827. A 2.5-Å cocrystal structure of the AMPK kinase domain with BAY-3827 revealed distinct features including a disulfide bridge between the αD helix Cys<sup>106</sup> and the activation loop residue Cys<sup>174</sup>. This bridge appears to stabilize the activation loop such that Asn<sup>162</sup> repositions the Asp-Phe-Gly (DFG) motif Phe<sup>158</sup> toward the C-terminal lobe, displacing His<sup>137</sup> and disrupting the regulatory spine, promoting an inactive kinase state. In hepatocytes, BAY-3827 blocked AMPK activator (MK-8722)-mediated phosphorylation of ACC1 and corresponding inhibition of lipogenesis. Transcriptome analysis revealed that BAY-3827 down-regulated ~30% of MK-8722-stimulated AMPK-dependent genes. We establish the molecular and cellular basis of BAY-3827's selectivity and utility for delineating AMPK functions while highlighting its limitations.

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