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电鳐突触小泡中乙酰胆碱储存阻断剂L-反式-2-(4-苯基[3,4-³H]-哌啶基)环己醇受体的证明。

Demonstration of a receptor in Torpedo synaptic vesicles for the acetylcholine storage blocker L-trans-2-(4-phenyl[3,4-3H]-piperidino) cyclohexanol.

作者信息

Bahr B A, Parsons S M

出版信息

Proc Natl Acad Sci U S A. 1986 Apr;83(7):2267-70. doi: 10.1073/pnas.83.7.2267.

Abstract

Transport and storage of acetylcholine by purified Torpedo electric organ synaptic vesicles is blocked by the drug L-trans-2-(4-phenylpiperidino)cyclohexanol (AH-5183). This study sought evidence of a specific receptor for the drug. Highly tritiated L-trans-2-(4-phenyl [3,4-3H] piperidino)-cyclohexanol (L-[3H] AH5183) was synthesized. An excess of nonradioactive L-isomer competed with L-[3H]AH5183 for binding to purified Torpedo synaptic vesicles whereas nonradioactive D-isomer did so poorly. Dissociation of bound L-[3H]AH5183 was first order with a rate constant at 23 degrees C of 0.23 +/- 0.03 min-1, and association was too rapid to study. At equilibrium the amount of L-[3H]AH5183 bound at saturation varied in different vesicle preparations, but in one typical preparation specific binding of 181 +/- 15 pmol L-[3H]AH5183 per mg of synaptic vesicle protein was observed with a dissociation constant of 34 +/- 6 nM. Neither acetylcholine nor choline compete effectively with L-[3H]AH5183 for binding. The evidence suggests that about 3.7 +/- 0.3 enantioselective receptors for L-[3H]AH5183 are typically present in each cholinergic synaptic vesicle, and the L-AH5183 binding site does not recognize acetylcholine.

摘要

药物L-反式-2-(4-苯基哌啶基)环己醇(AH-5183)可阻断纯化的电鳐电器官突触小泡对乙酰胆碱的转运和储存。本研究旨在寻找该药物特异性受体的证据。合成了高氚化的L-反式-2-(4-苯基[3,4-³H]哌啶基)环己醇(L-[³H]AH5183)。过量的非放射性L-异构体与L-[³H]AH5183竞争结合纯化的电鳐突触小泡,而非放射性D-异构体的竞争作用则很差。结合的L-[³H]AH5183的解离是一级反应,在23℃时的速率常数为0.23±0.03分钟⁻¹,结合太快以至于无法研究。在平衡状态下,不同小泡制剂中饱和时结合的L-[³H]AH5183的量各不相同,但在一个典型制剂中,观察到每毫克突触小泡蛋白的L-[³H]AH5183特异性结合量为181±15皮摩尔,解离常数为34±6纳摩尔。乙酰胆碱和胆碱都不能有效地与L-[³H]AH5183竞争结合。证据表明,每个胆碱能突触小泡中通常存在约3.7±0.3个对L-[³H]AH5183有对映选择性的受体,且L-AH5183结合位点不识别乙酰胆碱。

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