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d-筒箭毒碱类似物与电鳐烟碱型乙酰胆碱受体的相互作用。甲基化和立体异构化影响位点选择性竞争结合以及与非竞争性位点的结合。

Interaction of d-tubocurarine analogs with the Torpedo nicotinic acetylcholine receptor. Methylation and stereoisomerization affect site-selective competitive binding and binding to the noncompetitive site.

作者信息

Pedersen S E, Papineni R V

机构信息

Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 1995 Dec 29;270(52):31141-50. doi: 10.1074/jbc.270.52.31141.

Abstract

Analogs of d-tubocurarine were used to determine the individual effects of methylation, stereoisomerization, and halogenation of d-tubocurarine on the affinity for each of the two acetylcholine (ACh) binding sites of the Torpedo nicotinic acetylcholine receptor (AChR) and for the noncompetitive antagonist site. Eight analogs were synthesized, including three new compounds: 7'-O-methyl-chondocurarine, 12'-O-methyl-chondocurarine, and 13'-bromo-d-tubocurarine. The two ACh sites differ in their affinities for d-tubocurarine by 400-fold, as shown by inhibition of [3H]ACh binding, whereas the affinity ratio for metocurine, the trimethylated derivative of d-tubocurarine, is reduced to 30 due to a decreased affinity for the high affinity site. Binding analysis of five d-tubocurarine analogs demonstrates that methylation of the phenols alone is responsible for the observed changes in affinity. Substitution with bromine or iodine at the 13'-position affected affinity at both sites with a net increase in site selectivity. Stereoisomers of d-tubocurare had decreased affinity for only the high affinity ACh site. Thus, the ring systems, including the 12'- and 13'-positions and the 1-position stereocenter, appear to be important in discriminating between the two ACh binding sites. Desensitization of the AChR was measured by increased affinity for [3H]phencyclidine. Binding to only the single, high affinity acetylcholine binding site, comprised by the alpha gamma-subunits, was required for partial desensitization of the AChR by d-tubocurarine and its analogs. Stronger desensitization, to the same extent observed in the presence of the agonist carbamylcholine, occurred upon binding by iodonated or brominated d-tubocurarine. Interaction of the analogs at the noncompetitive antagonist site of the AChR was also measured by [3H]phencyclidine binding. The bis-tertiary ammonium analogs of either the d- or l-stereoisomers bound to the noncompetitive antagonist binding site of the AChR with 100-fold higher affinity than the corresponding quaternary ammonium analogs.

摘要

使用d -筒箭毒碱类似物来确定d -筒箭毒碱的甲基化、立体异构化和卤化对电鳐烟碱型乙酰胆碱受体(AChR)的两个乙酰胆碱(ACh)结合位点以及非竞争性拮抗剂位点亲和力的个体效应。合成了8种类似物,包括3种新化合物:7'-O -甲基软骨箭毒碱、12'-O -甲基软骨箭毒碱和13'-溴 - d -筒箭毒碱。如通过抑制[3H]ACh结合所示,两个ACh位点对d -筒箭毒碱的亲和力相差400倍,而d -筒箭毒碱的三甲基化衍生物美索箭毒对高亲和力位点的亲和力降低,其亲和力比值降至30。对5种d -筒箭毒碱类似物的结合分析表明,仅酚羟基的甲基化就导致了观察到的亲和力变化。在13'-位用溴或碘取代影响了两个位点的亲和力,位点选择性净增加。d -筒箭毒碱的立体异构体仅对高亲和力ACh位点的亲和力降低。因此,包括12'-和13'-位以及1 -位立体中心的环系统在区分两个ACh结合位点方面似乎很重要。通过对[3H]苯环利定亲和力的增加来测量AChR的脱敏作用。d -筒箭毒碱及其类似物使AChR部分脱敏仅需要与由αγ亚基组成的单一高亲和力乙酰胆碱结合位点结合。碘代或溴代d -筒箭毒碱结合后会发生更强的脱敏作用,达到与激动剂氨甲酰胆碱存在时观察到的相同程度。还通过[3H]苯环利定结合来测量类似物在AChR非竞争性拮抗剂位点的相互作用。d -或l -立体异构体的双叔铵类似物与AChR非竞争性拮抗剂结合位点的结合亲和力比相应的季铵类似物高100倍。

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