首页> 外文期刊>The Protein Journal >Dynamic Behavior of Rat Phosphoenolpyruvate Carboxykinase Inhibitors: New Mechanism for Enzyme Inhibition
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Dynamic Behavior of Rat Phosphoenolpyruvate Carboxykinase Inhibitors: New Mechanism for Enzyme Inhibition

机译:大鼠磷酸烯醇丙酮酸羧激酶抑制剂的动态行为:酶抑制的新机制。

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摘要

As an enzyme acting at the junction of gluconeogenic pathway, phosphoenolpyruvate carboxykinase (PEPCK) controls substrate flow from Krebs cycle toward glucose production. Therefore, it would be advantageous to design effective inhibitors to inactivate PEPCK in diabetes mellitus and other abnormalities caused by insulin resistance. Such inhibitors may compensate the metabolic consequences of ex-activity of PEPCK at these conditions. Understanding the mechanism by which inhibitors exert their effect on enzyme activity is of great interest for designing stronger inhibitors. In the present work, molecular dynamic simulations were used to study enzyme-inhibitor interactions. Our results indicate that inhibitors of PEPCK with their short chains interact with enzyme active site through non-covalent interactions of electrostatic and hydrogen bond nature. The data also show that inhibitors neither reach a stable state in their binding site nor make static complex with the enzyme active site. Instead, they interact with functional groups of active site residues in a dynamic fashion. In this way, oxalate and sulfoacetate carrying two negative groups of higher charge density and optimum spacing from each other, show more dynamic behavior (lower stability in their binding site) and more inhibitory effects than other inhibitors used (phosphonoformate, phosphoglycolate and 3-phosphonopropionate).
机译:磷酸烯醇丙酮酸羧化激酶(PEPCK)是一种作用于糖异生途径交界处的酶,可控制底物从克雷布斯循环向葡萄糖生成的流动。因此,设计有效的抑制剂以灭活糖尿病和其他由胰岛素抵抗引起的其他异常中的PEPCK将是有利的。在这些条件下,此类抑制剂可能补偿了PEPCK活性的代谢后果。对于设计更强的抑制剂,了解抑制剂对酶活性发挥作用的机理非常重要。在目前的工作中,分子动力学模拟被用来研究酶-抑制剂的相互作用。我们的结果表明,具有短链的PEPCK抑制剂通过静电和氢键性质的非共价相互作用与酶活性位点相互作用。数据还表明,抑制剂既未在其结合位点达到稳定状态,也未与酶活性位点形成静态复合物。相反,它们以动态方式与活性位点残基的官能团相互作用。这样,草酸和磺基乙酸酯带有两个负电荷基团,电荷密度更高,彼此之间具有最佳间距,与其他使用的抑制剂(甲磺酸膦酸酯,磷酸甘醇酸酯和3-膦酸酯丙酸酯)相比,表现出更多的动力学行为(结合位点的稳定性较低)和更多的抑制作用)。

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