首页> 外文OA文献 >Thermodynamics of antagonist binding to rat muscarinic M2 receptors: antimuscarinics of the pridinol, sila-pridinol, diphenidol and sila-diphenidol type.
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Thermodynamics of antagonist binding to rat muscarinic M2 receptors: antimuscarinics of the pridinol, sila-pridinol, diphenidol and sila-diphenidol type.

机译:拮抗剂与大鼠毒蕈碱M2受体结合的热力学:普立地诺,西拉-普地诺尔,苯海洛酚和西拉-二苯甲酚类型的抗毒蕈碱药。

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摘要

1. We studied the effect of temperature on the binding to rat heart M2 muscarinic receptors of antagonists related to the carbon/silicon pairs pridinol/sila-pridinol and diphenidol/sila-diphenidol (including three germanium compounds) and six structurally related pairs of enantiomers [(R)- and (S)-procyclidine, (R)- and (S)-trihexyphenidyl, (R)- and (S)-tricyclamol, (R)- and (S)-trihexyphenidyl methiodide, (R)- and (S)-hexahydro-diphenidol and (R)- and (S)-hexbutinol]. Binding affinities were determined in competition experiments using [3H]-N-methyl-scopolamine chloride as radioligand. The reference drugs were scopolamine and N-methyl-scopolamine bromide. 2. The affinity of the antagonists either increased or decreased with temperature. van't Hoff plots were linear in the 278-310 degrees K temperature range. Binding of all antagonists was entropy driven. Enthalpy changes varied from large negative values (down to -29 kJ mol-1) to large positive values (up to +30 kJ mol-1). 3. (R)-configurated drugs had a 10 to 100 fold greater affinity for M2 receptors than the corresponding (S)-enantiomers. Enthalpy and entropy changes of the respective enantiomers were different but no consistent pattern was observed. 4. When silanols (R3SiOH) were compared to carbinols (R3COH), the affinity increase caused by C/Si exchange varied between 3 and 10 fold for achiral drugs but was negligible in the case of chiral drugs. Silanols induced more favourable enthalpy and less favourable entropy changes than the corresponding carbinols when binding. Organogermanium compounds (R4Ge) when compared to their silicon counterparts (R4Si) showed no significant difference in affinity as well as in enthalpy and entropy changes. 5. Exchange of a cyclohexyl by a phenyl moiety was associated with an increase or a decrease in drug affinity (depending on the absolute configuration in the case of chiral drugs) and generally also with a more favourable enthalpy change and a less favourable entropy change of drug binding. 6. Replacement of a pyrrolidino by a piperidino group and increasing the length of the alkylene chain bridging the amino group and the central carbon or silicon atom were associated with either an increase or a decrease of entropy and enthalpy changes of drug binding. However, there was no clear correlation between these structural variations and the thermodynamic effects. 7. Taken together, these results suggest that hydrogen bond-forming OH groups and, to a lesser extent, polarizable phenyl groups contribute significantly to the thermodynamics of interactions between these classes of muscarinic antagonists and M2 muscarinic receptors.
机译:1.我们研究了温度对与碳/硅对普定醇/西拉-普定醇和苯甲酚/西拉-苯二酚(包括三种锗化合物)和六对结构对映异构体相关的拮抗剂与大鼠心脏M2毒蕈碱受体结合的影响[(R)-和(S)-环己啶,(R)-和(S)-三己基苯哌啶基,(R)-和(S)-三环胺,(R)-和(S)-三己基苯甲酰噻吩,(R)- (S)-六氢联苯酚和(R)-和(S)-己丁醇]。在竞争实验中,使用[3H] -N-甲基-东pol碱氯化物作为放射性配体确定结合亲和力。参考药物是东were碱和N-甲基东pol碱溴化物。 2.拮抗剂的亲和力随温度升高或降低。 van't Hoff图在278-310度K温度范围内呈线性。所有拮抗剂的结合都是由熵驱动的。焓变从大的负值(低至-29 kJ mol-1)到大的正值(高达+30 kJ mol-1)不等。 3.(R)-构型药物对M2受体的亲和力比相应的(S)-对映体高10至100倍。各个对映异构体的焓和熵变化是不同的,但是没有观察到一致的模式。 4.当将硅烷醇(R3SiOH)与甲醇(R3COH)进行比较时,由C / Si交换引起的亲和力增加对于非手性药物而言在3到10倍之间变化,但是对于手性药物而言可以忽略不计。结合时,硅烷醇比相应的甲醇诱导更有利的焓变和较差的熵变。与有机硅化合物(R4Si)相比,有机锗化合物(R4Ge)在亲和力以及焓变和熵变方面均无显着差异。 5.通过苯基部分交换环己基与药物亲和力的增加或降低有关(取决于手性药物的绝对构型),并且通常还具有更有利的焓变和较差的熵变。药物结合。 6.用哌啶子基取代吡咯烷并增加桥接氨基和中心碳或硅原子的亚烷基链的长度与药物结合的熵和焓变化的增加或减少有关。但是,这些结构变化与热力学效应之间没有明确的相关性。 7.综上所述,这些结果表明形成氢键的OH基团以及可极化的苯基在较小程度上大大促进了这类毒蕈碱拮抗剂与M2毒蕈碱受体之间相互作用的热力学。

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