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加利福尼亚海兔神经组织中立体选择性L-[3H]东莨菪碱结合位点:毒蕈碱受体的证据。

Stereoselective L-[3H]quinuclidinyl benzilate-binding sites in nervous tissue of Aplysia californica: evidence for muscarinic receptors.

作者信息

Murray T F, Mpitsos G J, Siebenaller J F, Barker D L

出版信息

J Neurosci. 1985 Dec;5(12):3184-8. doi: 10.1523/JNEUROSCI.05-12-03184.1985.

Abstract

The muscarinic antagonist L-[3H]quinuclidinyl benzilate (L-[3H]QNB) binds with a high affinity (Kd = 0.77 nM) to a single population of specific sites (Bmax = 47 fmol/mg of protein) in nervous tissue of the gastropod mollusc, Aplysia. The specific L-[3H]QNB binding is displaced stereoselectively by the enantiomers of benzetimide, dexetimide, and levetimide. The pharmacologically active enantiomer, dexetimide, is more potent than levetimide as an inhibitor of L-[3H]QNB binding. Moreover, the muscarinic cholinergic ligands, scopolamine, atropine, oxotremorine, and pilocarpine are effective inhibitors of the specific L-[3H]QNB binding, whereas nicotinic receptor antagonists, decamethonium and d-tubocurarine, are considerably less effective. These pharmacological characteristics of the L-[3H]QNB-binding site provide evidence for classical muscarinic receptors in Aplysia nervous tissue. The physiological relevance of the dexetimide-displaceable L-[3H]QNB-binding site was supported by the demonstration of the sensitivity of the specific binding to thermal denaturation. Specific binding of L-[3H]QNB was also detected in nervous tissue of another marine gastropod, Pleurobranchaea californica. The characteristics of the Aplysia L-[3H]QNB-binding site are in accordance with studies of numerous vertebrate and invertebrate tissues indicating that the muscarinic cholinergic receptor site has been highly conserved through evolution.

摘要

毒蕈碱拮抗剂L-[3H]甲基东莨菪碱(L-[3H]QNB)以高亲和力(Kd = 0.77 nM)与腹足纲软体动物海兔神经组织中的单一特异性位点群体(Bmax = 47 fmol/mg蛋白质)结合。苯乙酰胺、右甲毒扁豆碱和左旋毒扁豆碱的对映体可立体选择性地取代L-[3H]QNB的特异性结合。作为L-[3H]QNB结合抑制剂,具有药理活性的对映体右甲毒扁豆碱比左旋毒扁豆碱更有效。此外,毒蕈碱胆碱能配体东莨菪碱、阿托品、氧化震颤素和毛果芸香碱是特异性L-[3H]QNB结合的有效抑制剂,而烟碱受体拮抗剂十烃季铵和d-筒箭毒碱的效果则要差得多。L-[3H]QNB结合位点的这些药理学特征为海兔神经组织中存在经典毒蕈碱受体提供了证据。右甲毒扁豆碱可置换的L-[3H]QNB结合位点的生理相关性得到了特异性结合对热变性敏感性的证明的支持。在另一种海洋腹足动物加州侧鳃海牛的神经组织中也检测到了L-[3H]QNB的特异性结合。海兔L-[3H]QNB结合位点的特征与对众多脊椎动物和无脊椎动物组织的研究一致,表明毒蕈碱胆碱能受体位点在进化过程中得到了高度保守。

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