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豚鼠回肠和大鼠输精管中腺苷受体N6区域的性质

Nature of the N6 region of the adenosine receptor in guinea-pig ileum and rat vas deferens.

作者信息

Paton D M, Olsson R A, Thompson R T

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1986 Jul;333(3):313-22. doi: 10.1007/BF00512947.

Abstract

This study explored the nature of the purine domain N6 regions of the presynaptic adenosine receptors of guinea-pig ileum and of rat vas deferens. The experimental design tested a model of these receptors which is complementary to the structure of the N6 substituent of the classical A1 adenosine receptor agonist N6-1-phenyl-2R-propyladenosine, (R-PIA). Assays of activity employed ileal segments or the midportions of vasa deferentia under continuous electrical stimulation at 0.2 Hz. Structure activity correlations compared the EC-50s for twitch inhibition. As shown previously, R-PIA was 60-80 times more potent than its S diastereomer, the resultant of the positive contribution of propyl C-3 to activity as well as the negative influence of steric hindrance exerted by propyl C-3 of the S diastereomer. Other pairs of diastereomers having a chiral center adjacent to N6 showed that the stereoselectivity of the PIAs was generalizable. Biological activity appears to reside wholly in the N6 alkyl moiety; the phenyl or aryl groups of similar size actually diminished potency. The receptor subregions interacting with propyl C-1 and C-3 of R-PIA are each large enough to accommodate two - but not three - methylene residues, each methylene contributing additively to activity. Hydrophobicity is a prominent attribute of the propyl C-1 and C-3 subregions. The potencies of these analogs as inhibitors of presynaptic transmission in ileum or vas deferens are covariant with inhibition of [3H]N6-cyclohexyl-adenosine binding to rat cerebral cortical membranes. Singular exceptions to this generalization may represent organ- or species-dependent differences in receptor fine structure.

摘要

本研究探讨了豚鼠回肠和大鼠输精管突触前腺苷受体嘌呤结构域N6区域的性质。实验设计测试了这些受体的一个模型,该模型与经典A1腺苷受体激动剂N6-1-苯基-2R-丙基腺苷(R-PIA)的N6取代基结构互补。活性测定采用在0.2 Hz连续电刺激下的回肠段或输精管中段。结构活性关系比较了收缩抑制的半数有效浓度(EC-50)。如先前所示,R-PIA的效力比其S型非对映体高60至80倍,这是丙基C-3对活性的正向贡献以及S型非对映体丙基C-3产生的空间位阻的负面影响的结果。其他在N6附近具有手性中心的非对映体对表明,PIA的立体选择性具有普遍性。生物活性似乎完全存在于N6烷基部分;类似大小的苯基或芳基实际上降低了效力。与R-PIA的丙基C-1和C-3相互作用的受体亚区域各自大到足以容纳两个而非三个亚甲基残基,每个亚甲基对活性有累加贡献。疏水性是丙基C-1和C-3亚区域的一个突出特征。这些类似物作为回肠或输精管中突触前传递抑制剂的效力与对[3H]N6-环己基腺苷与大鼠大脑皮层膜结合的抑制作用呈协变关系。这一普遍规律的个别例外情况可能代表受体精细结构的器官或物种依赖性差异。

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