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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Integrated multi-spectroscopic and molecular modelling techniques to probe the interaction mechanism between salvianolic acid A and alpha-glucosidase
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Integrated multi-spectroscopic and molecular modelling techniques to probe the interaction mechanism between salvianolic acid A and alpha-glucosidase

机译:集成的多光谱和分子建模技术探讨Salvianolic酸A和α-葡糖苷酶之间的相互作用机理

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摘要

alpha-Glucosidase (AG) is an important drug target for the treatment of type 2 diabetes mellitus in humans due to the potential effect of down regulating glucose absorption in patients. In our previous study, salvianolic acid A (SAA) was found to exhibit potent AG inhibitory activity, whereas the interaction mechanism was still ambiguous. Herein, the interaction mechanism of SAA and AG was investigated by multi-spectroscopic methods along with molecular docking. As a result, it was found that SAA reversibly inhibited AG in a competitive manner with IC50 of 16.44 +/- 0.18 mu M, and the inhibition belonged to a multi-phase kinetics process with a first-order reaction. The intrinsic fluorescence of AG could be strongly quenched by SAA through a static quenching mechanism. The negative Gibbs free energy change and positive values of enthalpy and entropy change revealed that the binding of SAA to AG was spontaneous and dominated mainly by hydrophobic interactions, and only a single binding site was determined for them. Analysis of synchronous fluorescence, ANS-binding fluorescence, circular dichroism and Fourier transform infrared spectra suggested that the binding of SAA to AG induced rearrangement and conformational changes of the enzyme. Besides, further molecular modelling validated that SAA could bind to the active domain and prevent the entrance of substrate, resulting in the inhibition of AG activity. These findings provide new insights into understanding the interaction mechanism of SAA on AG. (c) 2019 Elsevier B.V. All rights reserved.
机译:α-葡萄糖苷酶(AG)是一种重要的药物,用于治疗人类2型糖尿病,由于患者下调葡萄糖吸收的潜在效果。在我们以前的研究中,发现Salvianolic acid A(SAA)表现出有效的Ag抑制活性,而相互作用机理仍然含糊不清。这里,通过多光谱方法以及分子对接研究SAA和Ag的相互作用机理。结果,发现SAA以竞争方式可逆地抑制AG,IC50为16.44 +/-0.18μm,抑制属于具有一阶反应的多相动力学过程。通过静态猝灭机理,SAA可以强烈地淬灭Ag的固有荧光。焓和熵变化的负吉布斯自由能量变化和阳性值表明,SAA至Ag的结合主要是通过疏水相互作用的自发性,并且仅测定单个结合位点。同步荧光分析,结合荧光,圆形二色性和傅立叶变换红外光谱的表明,SAA与AG诱导重排和酶的构象变化的结合。此外,进一步的分子模型验证了SAA可以与活性结构域结合并防止基材的入射,导致Ag活性的抑制。这些调查结果为了解SAA对AG的相互作用机制提供了新的见解。 (c)2019 Elsevier B.v.保留所有权利。

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