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Exploring inhibition mechanism and nature of lipase by Ligupurpuroside A extracted from Ku-Ding tea

机译:Ku-ding Tea提取的Ligupurpurooside A探讨抑制机制和脂肪酶的性质

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摘要

Enzyme-activity essay demonstrated that Ligupurpuroside A acts as a natural inhibitor of lipase in a competitive manner. The inhibition mechanism and nature of lipase by Ligupurpuroside A were investigated by fluorescence spectra, UV-Vis absorption spectra, circular dichroism (CD) spectra and molecular docking methods. Fluorescence experiments indicated that Ligupurpuroside A can quench the intrinsic fluorescence of lipase through a static quenching procedure. Thermodynamic analysis suggested that hydrophobic interaction is the main force between lipase and Ligupurpuroside A. Fluorescence resonance energy transfer experiment showed that an energy transfer from lipase to Ligupurpuroside A occurs with great possibility, confirming the presence of static quenching mechanism of lipase fluorescence by Ligupurpuroside A. Interestingly, conformation of lipase remained almost the same after bound to Ligupurpuroside A based on CD spectral experiments. All these experimental results were validated by the protein-ligand docking studies which further showed that Ligupurpuroside A could bind to the amino acid residues of the hydrophobic cavity on catalytic sites of lipase. This study should be helpful for the design of diet drug and the full use of Ligupurpuroside A in food industry.
机译:酶 - 活动论文表明,LigupurpuroSide A以竞争方式作为脂肪酶的天然抑制剂。通过荧光光谱,UV-Vis吸收光谱,圆形二色性(CD)光谱和分子对接方法研究了LigupurpuroSide A的抑制机制和性质。荧光实验表明,LigupurpuroSide A可以通过静态猝灭程序终止脂肪酶的内在荧光。热力学分析表明,疏水性相互作用是脂肪酶和韧带血红蛋白A的主力A.荧光共振能量转移实验表明,从脂肪酶到韧皮嘌呤醇素A的能量转移,有可能通过LigupurpuroSide A的脂肪酶荧光的存在静态猝灭机理。有趣的是,基于CD光谱实验,脂肪酶的构象保持几乎相同。通过蛋白质 - 配体对接研究验证了所有这些实验结果,进一步表明LigupurpuroSide A可以与脂肪酶催化位点上的疏水性腔的氨基酸残基结合。本研究应该有助于饮食药物的设计和食品工业中的韧带嘌呤醇素A的充分利用。

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