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阿米洛利类似物的分子识别:分子静电势分析。1. 吡嗪环修饰。

Molecular recognition of amiloride analogs: a molecular electrostatic potential analysis. 1. Pyrazine ring modifications.

作者信息

Venanzi C A, Plant C, Venanzi T J

机构信息

Department of Chemical Engineering, Chemistry, and Environmental Science, New Jersey Institute of Technology, Newark 07102.

出版信息

J Med Chem. 1992 May 1;35(9):1643-9. doi: 10.1021/jm00087a022.

Abstract

Ab initio molecular electrostatic potential (MEP) patterns are used to determine the electrostatic requirements for the formation of a stable blocking complex between amiloride analogs and the epithelial sodium channel of Rana ridibunda. MEP maps calculated in the 3-21G(*) and STO-3G basis sets for amiloride and analogs with pyrazine ring modifications are used to interpret differences in the microscopic rate constants for analog-channel binding determined by Li et al. MEP maps of the protonated analogs are correlated to differences in the value of kon, the microscopic association constant. Those analogs with kon values similar to amiloride are found to have a MEP maximum that is localized over the side chain, as well as strong, distinguishing minima in the MEP pattern off the carbonyl oxygen and positions 3, 4, and 5 of the pyrazine ring. MEP maps of a model-encounter complex (protonated analog and formic acid anion) are correlated to differences in koff, the microscopic dissociation constant. The major conclusions of this work are that (1) a stable blocking complex is formed with analogs which have a deep, localized minimum off the 6 position of the pyrazine ring, (2) the stability of the blocking complex is directly related to the depth of that minimum, (3) substitution at position 5 affects not only the depth but also the location and size of the minimum off position 6, and (4) steric factors may influence the optimal binding of the 6-position ligand to the ion channel. The MEP analysis also suggests that the distance between the proton donors of the chelating guanidinium moiety and the deep, localized minimum off position 6 of the pyrazine ring may define an important spatial requirement for all those analogs which form a stable blocking complex with the channel.

摘要

从头算分子静电势(MEP)模式用于确定阿米洛利类似物与泽蛙上皮钠通道形成稳定阻断复合物的静电要求。在3-21G(*)和STO-3G基组中计算得到的阿米洛利及具有吡嗪环修饰的类似物的MEP图,用于解释Li等人测定的类似物与通道结合的微观速率常数的差异。质子化类似物的MEP图与微观缔合常数kon值的差异相关。发现那些kon值与阿米洛利相似的类似物,其MEP最大值位于侧链上,并且在羰基氧以及吡嗪环的3、4和5位的MEP模式中有强烈的、独特的最小值。模型相遇复合物(质子化类似物和甲酸根阴离子)的MEP图与微观解离常数koff的差异相关。这项工作的主要结论是:(1)与在吡嗪环6位有一个深的、局部最小值的类似物形成稳定的阻断复合物;(2)阻断复合物的稳定性与该最小值的深度直接相关;(3)5位的取代不仅影响最小值的深度,还影响6位最小值的位置和大小;(4)空间因素可能影响6位配体与离子通道的最佳结合。MEP分析还表明,螯合胍基部分的质子供体与吡嗪环6位的深的、局部最小值之间的距离,可能为所有与通道形成稳定阻断复合物的类似物定义了一个重要的空间要求。

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