首页> 外文期刊>Journal of Molecular Structure. Theochem: Applications of Theoretical Chemistry to Organic, Inorganic and Biological Problems >The use of the electronegativity equalization principle to study charge distributions in enzymes: application to dipeptides
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The use of the electronegativity equalization principle to study charge distributions in enzymes: application to dipeptides

机译:使用电负性均衡原理研究酶中的电荷分布:在二肽中的应用

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The aim of this paper is the introduction of the use of the electronegativity equalization principle to study charge distribution in enzymes. This method holds an economic way to study these large systems. The principle is at first, used here to study charge distributions in simple pepetides having the #beta#-sheet structure and a #beta#-sheet heptapeptide sequence from the serine protease subtilisin BPN. Two different approximations to the electronegativity of a group in a molecule were used to obtain the amino acid group charges which were then compared with ab initio calculated charges: the simple Huheey approximation and a version including external potential perturbation effects. It turns out that the simple Huheey equation, which can readily be used for larger systems, yields the best results and that a more refined and time consuming treatment of the external potential will be necessary for further improvement of the results.
机译:本文的目的是介绍使用电负性均衡原理研究酶中的电荷分布。这种方法拥有研究这些大型系统的经济方法。首先,该原理在这里用于研究来自丝氨酸蛋白酶枯草杆菌蛋白酶BPN的具有#beta#-sheet结构和#beta#-sheet七肽序列的简单肽段中的电荷分布。使用分子中基团的电负性的两种不同近似值来获得氨基酸基团电荷,然后将其与从头算出的电荷进行比较:简单的Huheey近似值和包括外部电势扰动效应的形式。事实证明,可以轻松用于大型系统的简单Huheey方程可产生最佳结果,并且需要进一步完善和耗时的外部电势处理才能进一步改善结果。

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