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Altering the inhibitory kinetics and molecular conformation of maltase by Tangzhiqing (TZQ), a natural α-glucosidase inhibitor

机译:唐志清(TZQ)改变畸形术(TZQ),一种天然α-葡糖苷酶抑制剂的抑制性动力学和分子构象

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Tangzhiqing (TZQ), as a potential α-glycosidase inhibitor, possesses postprandial hypoglycaemic effects on maltose in humans. The aim of this study was to investigate the mechanisms by which TZQ attenuates postprandial glucose by interrupting the activity of maltase, including inhibitory kinetics and circular dichroism studies. In this study, we determined the inhibitory effect of TZQ on maltase by kinetic analysis to determine the IC50 value and enzyme velocity studies and line weaver-burk plot generation to determine inhibition type. Acarbose was chosen as a standard control drug. After the interaction with TZQ and maltase, secondary structure analysis was conducted with a circular dichroism method. TZQ showed notable inhibition activity on maltase in a reversible and competitive manner with an IC50 value of 1.67?±?0.09?μg/ml, which was weaker than that of acarbose (IC50?=?0.29?±?0.01?μg/ml). The circular dichroism spectrum demonstrated that the binding of TZQ to maltase changed the conformation of maltase and varied with the concentration of TZQ in terms of the disappearance of β-sheets and an increase in the α-helix content of the enzyme, similar to acarbose. This work provides useful information for the inhibitory effect of TZQ on maltase. TZQ has the potential to be an α-glycosidase inhibitor for the prevention and treatment of prediabetes or mild diabetes mellitus.
机译:作为潜在的α-糖苷酶抑制剂的唐芝(TZQ)对人类的麦芽糖具有后催化剂作用。本研究的目的是探讨TZQ通过中断麦芽糖酶活性,包括抑制动力学和圆形二色性研究的机制。在这项研究中,我们通过动力学分析确定了TZQ对畸形酶的抑制作用,以确定IC50值和酶速度研究和线织物 - Burk图产生以确定抑制型。选择Acarbose作为标准对照药物。在与TZQ和畸形的相互作用之后,用圆形二色法进行二次结构分析。 TZQ以可逆且竞争的方式在丙二胱上显示出显着的抑制活性,IC50值为1.67?±0.09Ω·μg/ ml,其比acarbose(IC50?= 0.29?±0.29?0.01≤μg/ ml)较弱。圆形二中间谱证明TZQ对染色酶的结合改变了麦芽酶的构象,并在β-片的消失和酶的α-螺旋含量的增加方面随着TZQ的浓度而变化,类似于氨基糖。这项工作为TZQ对麦芽酶的抑制作用提供了有用的信息。 TZQ具有α-糖苷酶抑制剂,用于预防和治疗前脂糖尿病或轻度糖尿病。

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