Structural dependence of the allosteric interaction of semi-rigid verapamil analogues with dihydropyridine-binding in kitten heart

Werner Voigt , M. Novella Romanelli , Horst Lemoine , Raimund Mannhold , Silvia Dei , Elisabetta Teodori , Fulvio Gualtieri
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引用次数: 3

Abstract

Structural determinants of the allosteric interaction of semi-rigid verapamil analogues with dihydropyridine binding were investigated in kitten heart using [3H](+)-isradipine as radioligand. Chemical variations were performed in the alkyl chain of verapamil and include introduction of unsaturation (double or triple bonds) or the insertion of cyclohexyl moieties. Introduction of unsaturation generally reduces the allosteric interaction in the case of ‘double bond’ - and abolishes it in the case of ‘triple bond’ - derivatives. Also the introduction of cyclohexyl moieties diminishes the potency of allosteric interaction: derivatives with the phenylethylamino side chain in an equatorial position exhibit the allosteric interaction, while it is lacking in derivatives with the basic side chain in axial position. Thus, the reduced conformational flexibility of the new verapamil congeners reduces or abolishes their ability to allosterically interfere with dihydropyridine binding. A molecular interpretation was approached by molecular modelling studies. The strategy was to find low energy conformations common to the active congeners, but not shared by the inactive ones. Structural features discriminating allosterically active and inactive congeners comprise: 1) the position of the nitrogen, 2) the volume occupied by the N-methyl groups, 3) the direction of the N-H bond and 4) the position of the phenyl ring in the basic side chain.

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半刚性维拉帕米类似物与二氢吡啶结合在小猫心脏中的变构相互作用的结构依赖性
用[3H](+)-isradipine作为配体,研究了半刚性维拉帕米类似物与二氢吡啶结合的变构相互作用的结构决定因素。维拉帕米的烷基链发生了化学变化,包括引入不饱和(双键或三键)或环己基部分的插入。引入不饱和通常会减少衍生物中“双键”的变构相互作用,而在衍生物中“三键”的变构相互作用则会消失。此外,环己基部分的引入降低了变构相互作用的效力:在赤道位置的苯乙胺侧链衍生物表现出变构相互作用,而在轴向位置的基本侧链衍生物则缺乏变构相互作用。因此,新的维拉帕米同系物的构象柔韧性降低或消除了它们变构干扰二氢吡啶结合的能力。通过分子模拟研究来进行分子解释。该策略是找到活性同系物共有的低能构象,而非活性同系物共有的低能构象。区分变构活性和非变构同源物的结构特征包括:1)氮的位置,2)n -甲基占据的体积,3)N-H键的方向,4)苯基环在基本侧链中的位置。
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