首页> 外文期刊>The Natural Products Journal >Deciphering the Inactivation of Human Pancreatic 兛-Amylase, an Antidiabetic Target, by Bisdemethoxycurcumin, a Small Molecule Inhibitor, Isolated from Curcuma longa
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Deciphering the Inactivation of Human Pancreatic 兛-Amylase, an Antidiabetic Target, by Bisdemethoxycurcumin, a Small Molecule Inhibitor, Isolated from Curcuma longa

机译:破除姜黄中的一种小分子抑制剂双去甲氧基姜黄素,从而使人抗胰蛋白酶α-淀粉酶失活。

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摘要

Natural products from plants are an excellent source of Human pancreatic 兛-amylase (HPA) inhibitors which have therapeutic application as oral agents to control blood glucose levels. The mechanism of action by Bisdemethoxycurcumin (BDMC) has been reported, isolated from Curcuma longa rhizomes, which inactivates HPA, a target for type-2 diabetes. This study validates its mode of action and its target which has to date remained largely unknown. The cytotoxicity and bioactivity of crude extract and BDMC on the pancreatic acinar AR42J secretory model cell line were evaluated with LD_(50) value of 16.25 兪g ml~(-1) and 63.53 uM, and secretory a-amylase inhibition of 41% and 30%, respectively. BDMC uncompetitively inhibits HPA (Ki of 10.1 兪M) and a binding affinity (K_a) of 8.5 x 10~4 M~(-1) with the involvement of surface exposed aromatic residues. The thermodynamic parameters suggest that binding is both enthalpically and entropically driven with 仮G亱 of - 28.13 kJ mol~(-1). Computational ligand docking showed that inactivation depends on hydrogen bonding and 兾-兾 interactions. Thus, BDMC, a natural product could be lowering post-prandial glycemia via a novel mode of binding and inactivation of HPA and may proved to be a good drug candidate to reduce/control post-prandial hyperglycemia.
机译:来自植物的天然产物是人类胰α-淀粉酶(HPA)抑制剂的极好来源,这些抑制剂可作为治疗血糖水平的口服药物而具有治疗作用。从双姜黄根茎中分离出来的双去甲氧基姜黄素(BDMC)的作用机理已有报道,它使2型糖尿病的靶标HPA失活。这项研究证实了其作用方式和迄今仍未知的目标。以LD_(50)值为16.25μgml〜(-1)和63.53 uM,对分泌性a-淀粉酶的抑制率为41%和30%。 BDMC竞争性抑制HPA(Ki为10.1μM),结合亲和力(K_a)为8.5 x 10〜4 M〜(-1),并带有暴露于表面的芳香族残基。热力学参数表明结合是由焓和熵驱动的,.G仮为-28.13 kJ mol〜(-1)。计算的配体对接表明失活取决于氢键和and-兾相互作用。因此,天然产物BDMC可以通过一种新颖的HPA结合和失活模式来降低餐后血糖,并且可能被证明是减少/控制餐后高血糖的良好药物。

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