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首页> 外文期刊>RSC Advances >Linking inhibitor motions to proteolytic stability of sunflower trypsin inhibitor-1
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Linking inhibitor motions to proteolytic stability of sunflower trypsin inhibitor-1

机译:将抑制剂的运动与向日葵胰蛋白酶抑制剂-1的蛋白水解稳定性联系起来

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摘要

The remarkable capability of an enzyme isn't only determined by its active site but also controlled by the environment. To unravel the environment role in catalysis, the dynamic motions as well as the static mechanism need to be studied. In this work, QM/MM MD simulations were employed to study the proteolysis process of SFTI-1 and BiKF, which revealed that a combination of static non-bonded interactions and dynamic motions along the reaction coordinate can account for the different hydrolysis rates between them. A comparison among SFTI-1 and three analogs with similar non-bonded interactions further revealed a positive correlation between the mobility of inhibitors and the hydrolysis rates. Apart from the cyclic backbone and disulfide bond, intramolecular hydrogen bonds also increase the rigidity of the backbone of inhibitors, and therefore hinder inhibitor motions to resist proteolysis. These new detailed mechanistic insights suggest the need to consider inhibitor motions in the rational design of peptide inhibitors.
机译:酶的卓越能力不仅取决于其活性位点,还受环境的控制。为了弄清环境在催化中的作用,需要研究动态运动以及静态机理。在这项工作中,采用QM / MM MD模拟研究了SFTI-1和BiKF的蛋白水解过程,结果表明,静态非键相互作用和沿反应坐标的动态运动的结合可以解释它们之间的不同水解速率。 SFTI-1与三种具有类似非键相互作用的类似物的比较进一步揭示了抑制剂的迁移率与水解速率之间存在正相关。除环状主链和二硫键外,分子内氢键还增加了抑制剂主链的刚性,因此阻碍了抑制剂抵抗蛋白水解的运动。这些新的详细的机械学见解表明,在肽抑制剂的合理设计中需要考虑抑制剂的运动。

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