在变构药物结合位点抑制amp活化蛋白激酶促进胰岛胰岛素释放。

John W Scott, Sandra Galic, Kate L Graham, Richard Foitzik, Naomi X Y Ling, Toby A Dite, Samah M A Issa, Chris G Langendorf, Qing Ping Weng, Helen E Thomas, Thomas W Kay, Neal C Birnberg, Gregory R Steinberg, Bruce E Kemp, Jonathan S Oakhill
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引用次数: 52

摘要

amp活化蛋白激酶(AMPK)是一种代谢应激感应αβγ异源三聚体,负责能量稳态。AMPK的药理抑制被认为是一些疾病的治疗策略,包括肥胖和癌症;然而,广泛使用的直接AMPK抑制剂化合物C的选择性较差。我们发现了一种具有新型AMPK调控特性的二羟基喹啉药物(MT47-100),它同时是含有β1或β2异构体的AMPK复合物的直接激活剂和抑制剂。MT47-100的变抑作用依赖于β2糖结合模块(CBM),并由三个非保守的CBM残基(Ile81, Phe91, Ile92)决定,但与β2- ser108磷酸化无关。MT47-100通过β1/β2表达比调节细胞总AMPK活性,而MT47-100通过β2依赖机制增强葡萄糖刺激的小鼠胰岛胰岛素分泌。我们的研究结果强调了异构体特异性AMPK变构抑制剂的治疗潜力。
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Inhibition of AMP-Activated Protein Kinase at the Allosteric Drug-Binding Site Promotes Islet Insulin Release.

The AMP-activated protein kinase (AMPK) is a metabolic stress-sensing αβγ heterotrimer responsible for energy homeostasis. Pharmacological inhibition of AMPK is regarded as a therapeutic strategy in some disease settings including obesity and cancer; however, the broadly used direct AMPK inhibitor compound C suffers from poor selectivity. We have discovered a dihydroxyquinoline drug (MT47-100) with novel AMPK regulatory properties, being simultaneously a direct activator and inhibitor of AMPK complexes containing the β1 or β2 isoform, respectively. Allosteric inhibition by MT47-100 was dependent on the β2 carbohydrate-binding module (CBM) and determined by three non-conserved CBM residues (Ile81, Phe91, Ile92), but was independent of β2-Ser108 phosphorylation. Whereas MT47-100 regulation of total cellular AMPK activity was determined by β1/β2 expression ratio, MT47-100 augmented glucose-stimulated insulin secretion from isolated mouse pancreatic islets via a β2-dependent mechanism. Our findings highlight the therapeutic potential of isoform-specific AMPK allosteric inhibitors.

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Chemistry & biology
Chemistry & biology 生物-生化与分子生物学
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