[立体化学对药理受体空间组织研究的贡献]。

Journal de pharmacologie Pub Date : 1986-01-01
A Boucherle, H Fillion, H Cousse
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引用次数: 0

摘要

巴斯德光学同分异构体的重要发现和立体化学的最新进展表明,分子的几何结构与其药理受体之间存在互补关系。简要概述了其立体化学基础和主要构型命名。生物反应的立体专一性和理论导致了主要药理受体的立体化学结构的方法。因此,类固醇的生物活性取决于环的连接模式和取代基的构型。乙酰胆碱具有倾斜构象,但与毒蕈碱受体发生反平面或反平面构象反应。为了解释肾上腺素对映体活性的差异,Easson和Stedman提出了肾上腺素能受体的“三点”固定。多巴胺能受体表现出良好的立体选择性:多巴胺以反平面构象作用,其N-O距离与阿吗啡(N-O10)相同。吗啡类药物的镇痛活性是由于B和C环的顺式连接以及氮上未共享孤对的立体电子效应。在甜蜜素甜味剂中,一些作者提出了甜味受体的两个固定点(一个受体和一个供体)和两个空间屏障位于这两个位置的精确距离的模型。描述了分子作为酶的底物或抑制剂的立体选择性。例如,某些恶唑烷酮衍生物对单胺氧化酶a具有选择性抑制作用。最后,当分子以外消旋形式给药时,其药理活性往往下降。似乎外源药物需要不对称才能被生物系统手性识别。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Contribution of stereochemistry to the study of the spatial organization of pharmacological receptors].

The important discovery by Pasteur of optical isomerism and the recent developments of stereochemistry showed that a complementarity exist between the geometry of molecules and their pharmacological receptors. The stereochemical bases and the principal configurational nomenclatures are briefly overviewed. The stereospecificity of the biological response and theories leading to an approach to stereochemical structures of main pharmacological receptors are developed. So, the biological activity of steroids is due to junctional modes of cycles and alpha or beta configurations of substituents. Acetylcholine has a skew conformation but it react by an anticlinal/anti-planar conformation with muscarinic receptor. To explain the difference in activity of adrenaline enantiomers, Easson and Stedman proposed a "three points" fixation to the adrenergic receptor. Dopaminergic receptor present a good degree of stereoselectivity: dopamine act by an anti-planar conformation in which the N-O distance is the same as in apomorphine (N-O10). The analgesic activity of morphinans is due to a cis junction of B and C cycles and to the stereoelectronic effect of the unshared lone pair on nitrogen. In the cyclamate sweeteners, some authors proposed for the sweet taste receptor a model with two points fixation (one acceptor and one donor) and two spatial barriers located at precise distances from this two sites. The stereoselectivity of molecules acting as substrates or inhibitors of enzymes is described. For example some oxazolidinone derivatives showed a selective inhibition toward monoamine oxidase A. Finally, the pharmacological activity falls often when molecules are administrated in racemic form. It seems that xenobiotics need to be dissymmetric for chiral recognition by biological systems.

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