Messer W S, Ngur D O, Abuh Y F, Dokas L A, Ting S M, Hacksell U, Nilsson B M, Dunbar P G, Hoss W
Department of Medicinal and Biological Chemistry, College of Pharmacy, University of Toledo, Ohio 43606.
Chirality. 1992;4(8):463-8. doi: 10.1002/chir.530040802.
The activities of the enantiomers of BM-5 were examined to measure muscarinic cholinergic selectivity in the central nervous system. Autoradiographic studies assessed the ability of each enantiomer to inhibit the binding of [3H]-(R)-quinuclidinyl benzilate ([3H]-(R)-QNB) to muscarinic receptors in the rat brain. (+)-(R)-BM-5 inhibited [3H]-(R)-QNB binding to rat brain sections at concentrations below 1.0 microM, while 100-fold higher concentrations of (-)-(S)-BM-5 were required for comparable levels of inhibition. Analysis of the autoradiograms indicated that both stereoisomers had a similar distribution of high affinity binding sites. Each enantiomer displayed higher affinity for muscarinic receptors in the superior colliculi and lower affinity for receptors in the cerebral cortex and hippocampus. (+)-(R)-BM-5 and oxotremorine inhibited adenylyl cyclase activity in the cerebral cortex with efficacies comparable to that for acetylcholine. (+)-(R)-BM-5 was 26-fold more potent than (-)-(S)-BM-5 in inhibiting adenylyl cyclase. Oxotremorine-M and carbamylcholine stimulated phosphoinositide turnover in the cerebral cortex. Oxotremorine had lower activity and (+)-(R)-BM-5 was essentially inactive at comparable concentrations. The difference in activity of the two enantiomers indicates a remarkable stereochemical selectivity for muscarinic receptors. The stereoselectivity index is comparable for both the autoradiographic assays (48) and measures of adenylyl cyclase activity (26) in the cerebral cortex.
对BM - 5对映体的活性进行了检测,以测定其在中枢神经系统中的毒蕈碱胆碱能选择性。放射自显影研究评估了每种对映体抑制[3H] - (R) - 奎宁环基苯甲酸酯([3H] - (R) - QNB)与大鼠脑中毒蕈碱受体结合的能力。(+)-(R)-BM - 5在浓度低于1.0微摩尔时就能抑制[3H] - (R) - QNB与大鼠脑切片的结合,而(-)-(S)-BM - 5需要高100倍的浓度才能达到类似的抑制水平。放射自显影片分析表明,两种立体异构体具有相似的高亲和力结合位点分布。每种对映体对上丘中的毒蕈碱受体显示出更高的亲和力,而对大脑皮层和海马体中的受体亲和力较低。(+)-(R)-BM - 5和氧化震颤素抑制大脑皮层中的腺苷酸环化酶活性,其效力与乙酰胆碱相当。(+)-(R)-BM - 5在抑制腺苷酸环化酶方面比(-)-(S)-BM - 5强26倍。氧化震颤素 - M和氨甲酰胆碱刺激大脑皮层中的磷酸肌醇周转。氧化震颤素活性较低,(+)-(R)-BM - 5在相当浓度下基本无活性。两种对映体活性的差异表明对毒蕈碱受体具有显著的立体化学选择性。放射自显影分析(48)和大脑皮层中腺苷酸环化酶活性测定(26)的立体选择性指数相当。