首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Stereoselective recognition of the enantiomers of phenglutarimide and of six related compounds by four muscarinic receptor subtypes.
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Stereoselective recognition of the enantiomers of phenglutarimide and of six related compounds by four muscarinic receptor subtypes.

机译:四种毒蕈碱受体亚型对苯戊二酰亚胺和六个相关化合物的对映异构体的立体选择性识别。

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摘要

1. We have compared the binding properties of the enantiomers of phenglutarimide (1) and of six related compounds to M1 receptors in NB-OK-1 cells, M2 receptors in rat heart, M3 receptors in rat pancreas and the M4 receptors of rat striatum, with their functional (antimuscarinic) properties in rabbit vas deferens (M1/M4-like), guinea-pig atria (M2) and guinea-pig ileum (M3) receptors. The binding properties of the enantiomers of three of the compounds were also measured on cloned human m1-m4 receptors expressed by CHO cells, using [3H]-N-methylscopolamine ([3H]-NMS) as radioligand. 2. The high affinity enantiomers behaved as competitive antagonists in binding and pharmacological studies. (S)-phenglutarimide (pKi-M1 = 9.0/9.3) and (R)-thienglutarimide (pKi-M1 = 8.6/9.2) recognized selectively the native M1 > M4 > M3 > M2 receptors in tissues as well as the respective cloned receptors. 3. The pA2 values at the inhibitory heteroreceptors in the rabbit vas deferens, and at the guinea-pig atria and ileum for the seven more potent enantiomers were compatible with the previous classification of these receptors as M1/M4-like, M2 and M3, respectively. 4. Replacement of the phenyl by a thienyl ring or of the diethylamino by a piperidino group in the phenglutarimide molecule did not affect markedly the potencies of the high affinity enantiomer. In contrast, replacement of the phenyl by a cyclohexyl ring decreased 20 fold the active enantiomers potency. Methylation of the piperidine-2,6-dione nitrogen also reduced markedly the eutomers' affinities, more on the M1 than on the other subtypes. 5. The selectivity profiles (recognition of four receptor subtypes) of six of the seven less active enantiomers were different from the corresponding more active enantiomers selectivity profiles, suggesting that the preparations used in this study were pure. However, we cannot not exclude the hypothesis that the batch of (S)-thienglutarimide used in this study was contaminated by less than 0.02% of the eutomer. 6. In contrast with the eutomer binding site, replacement of the phenyl ring by a thienyl or cyclohexyl ring did not affect binding of the low affinity enantiomers to the muscarinic receptor or the [3H]-NMS-receptor complex. The replacement of the diethylamino group by a piperidine ring, and N-methylation of the piperidine-2,6 dione moiety increased slightly these enantiomers' potencies. 7. The muscarinic receptors were extremely stereoselective, and had up to 20000 fold lower affinity for the less active enantiomers. However, the stereochemical requirements of the muscarinic receptor subtypes were different for the enantiomers of compounds 1-7, being most stringent at M1 receptors. 8. The weaker enantiomers behaved as competitive antagonists in pharmacological studies, at least in the concentration-range investigated.
机译:1.我们比较了苯丙氨酰胺(1)和六种相关化合物的对映体与NB-OK-1细胞中的M1受体,大鼠心脏中的M2受体,大鼠胰腺中的M3受体以及大鼠纹状体的M4受体的结合特性,在兔输精管(M1 / M4样),豚鼠心房(M2)和豚鼠回肠(M3)受体中具有功能性(抗毒蕈碱)特性。还使用[3H] -N-甲基东pol碱([3H] -NMS)作为放射性配体,在CHO细胞表达的克隆的m1-m4受体上测量了三种化合物的对映体的结合特性。 2.高亲和力对映体在结合和药理研究中表现为竞争性拮抗剂。 (S)-phenglutarimide(pKi-M1 = 9.0 / 9.3)和(R)-thienglutarimide(pKi-M1 = 8.6 / 9.2)选择性识别组织中的天然M1> M4> M3> M2受体以及相应的克隆受体。 3.在兔输精管,豚鼠心房和回肠的抑制异源受体中,另外七个强效对映体的pA2值与这些受体先前的分类相符,如M1 / M4样,M2和M3,分别。 4.苯戊二酰亚胺分子中的噻吩环上的苯基取代或哌啶子基上的二乙氨基取代对高亲和力对映异构体的效力没有明显影响。相反,用环己基环取代苯基使活性对映异构体的效力降低了20倍。哌啶-2,6-二酮氮的甲基化也显着降低了幸福感者的亲和力,在M1上比在其他亚型上更多。 5.七个活性较低的对映异构体中的六个的选择性分布图(识别四个受体亚型)与相应的活性较高的对映异构体选择性分布图不同,这表明本研究中使用的制剂是纯净的。但是,我们不能排除以下假设:该研究中使用的(S)-噻戊二酰亚胺批次受小于0.02%的eutomer污染。 6.与eutomer结合位点相反,用噻吩基或环己基环取代苯环不会影响低亲和力对映体与毒蕈碱受体或[3H] -NMS-受体复合物的结合。用哌啶环取代二乙氨基,并用哌啶-2,6二酮部分进行N-甲基化,可稍微提高这些对映异构体的效能。 7.毒蕈碱受体具有极高的立体选择性,对活性较低的对映体的亲和力低至20000倍。然而,毒蕈碱受体亚型的立体化学要求对于化合物1-7的对映异构体是不同的,对M1受体最严格。 8.较弱的对映体至少在所研究的浓度范围内在药理研究中表现为竞争性拮抗剂。

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