1] MRC National Institute for Medical Research, The Ridgeway, Mill Hill, London NW7 1AA, UK [2].
1] MRC Clinical Sciences Centre, Cellular Stress Group, Hammersmith Hospital Campus, Imperial College, DuCane Road, London W12 0NN, UK [2].
Nat Commun. 2013;4:3017. doi: 10.1038/ncomms4017.
AMP-activated protein kinase (AMPK) plays a major role in regulating cellular energy balance by sensing and responding to increases in AMP/ADP concentration relative to ATP. Binding of AMP causes allosteric activation of the enzyme and binding of either AMP or ADP promotes and maintains the phosphorylation of threonine 172 within the activation loop of the kinase. AMPK has attracted widespread interest as a potential therapeutic target for metabolic diseases including type 2 diabetes and, more recently, cancer. A number of direct AMPK activators have been reported as having beneficial effects in treating metabolic diseases, but there has been no structural basis for activator binding to AMPK. Here we present the crystal structure of human AMPK in complex with a small molecule activator that binds at a site between the kinase domain and the carbohydrate-binding module, stabilising the interaction between these two components. The nature of the activator-binding pocket suggests the involvement of an additional, as yet unidentified, metabolite in the physiological regulation of AMPK. Importantly, the structure offers new opportunities for the design of small molecule activators of AMPK for treatment of metabolic disorders.
AMP 激活的蛋白激酶(AMPK)通过感应 AMP/ADP 与 ATP 浓度的增加来调节细胞能量平衡,在其中起着主要作用。AMP 的结合会引起酶的别构激活,而 AMP 或 ADP 的结合会促进并维持激酶激活环中苏氨酸 172 的磷酸化。AMPK 作为包括 2 型糖尿病在内的代谢疾病的潜在治疗靶点引起了广泛关注,最近又成为癌症的治疗靶点。已经报道了许多直接的 AMPK 激活剂在治疗代谢疾病方面具有有益的作用,但对于激活剂与 AMPK 的结合没有结构基础。在这里,我们展示了人 AMPK 与小分子激活剂复合物的晶体结构,该激活剂结合在激酶结构域和碳水化合物结合模块之间的一个位点上,稳定了这两个组件之间的相互作用。激活剂结合口袋的性质表明,在 AMPK 的生理调节中涉及到另一种尚未鉴定的代谢物。重要的是,该结构为设计用于治疗代谢紊乱的小分子 AMPK 激活剂提供了新的机会。