首页> 外文期刊>Molecular pharmacology. >Partial deletion of the nicotinic cholinergic receptor alpha 4 or beta 2 subunit genes changes the acetylcholine sensitivity of receptor-mediated 86Rb+ efflux in cortex and thalamus and alters relative expression of alpha 4 and beta 2 subunits.
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Partial deletion of the nicotinic cholinergic receptor alpha 4 or beta 2 subunit genes changes the acetylcholine sensitivity of receptor-mediated 86Rb+ efflux in cortex and thalamus and alters relative expression of alpha 4 and beta 2 subunits.

机译:烟碱胆碱能受体α4或β2亚基基因的部分缺失改变了皮质和丘脑中受体介导的86Rb +外排的乙酰胆碱敏感性,并改变了α4和β2亚基的相对表达。

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摘要

Alpha4 and beta2 nicotinic cholinergic receptor (nAChR) subunits can assemble in heterologous expression systems as pentameric receptors with different subunit stoichiometries that exhibit differential sensitivity to activation by acetylcholine, yielding biphasic concentration-effect curves. nAChR-mediated (86)Rb(+) efflux in mouse brain synaptosomes also displays biphasic acetylcholine (ACh) concentration-response curves. Both phases are mediated primarily by alpha4beta2(*)-nAChR, because deletion of either the alpha4 or beta2 subunit reduces response at least 90%. A relatively larger decrease in the component of (86)Rb(+) efflux with lower ACh sensitivity occurred with partial deletion of alpha4 (alpha4(+/-)), whereas a larger decrease in the component with higher ACh sensitivity was elicited by partial deletion of beta2 (beta2(+/-)). Immunoprecipitation with selective antibodies demonstrated that more than 70% of [(3)H]epibatidine binding sites in both regions contained only alpha4 and beta2 subunits. Subsequently, alpha4 and beta2 subunit content in the cortex and thalamus of alpha4 and beta2 wild types and heterozygotes was analyzed with Western blots. Partial deletion of alpha4 decreased and partial deletion of beta2 increased the relative proportion of the alpha4 subunit in assembled receptors. Although these methods do not allow exact identification of stoichiometry of the subtypes present in wild-type cortex and thalamus, they do demonstrate that cortical and thalamic nAChRs of the alpha4(+/-) and beta2(+/-) genotypes differ in relative expression of alpha4 and beta2 subunits a result that corresponds to the relative functional changes observed after partial gene deletion. These results strongly suggest that alpha4beta2-nAChR with different stoichiometry are expressed in native tissue.
机译:Alpha4和β2烟碱胆碱能受体(nAChR)亚基可以在异源表达系统中组装为具有不同亚基化学计量比的五聚体受体,对乙酰胆碱活化表现出不同的敏感性,从而产生双相浓度-效应曲线。小鼠脑突触体中的nAChR介导的(86)Rb(+)外排还显示了双相乙酰胆碱(ACh)浓度-响应曲线。这两个阶段主要由alpha4beta2(*)-nAChR介导,因为删除alpha4或beta2亚基可将反应降低至少90%。 Ach敏感性较低的(86)Rb(+)外排组分相对较大的减少发生与alpha4(α4(+/-))的部分删除,而ACh敏感性较高的组分的较大减少是由部分A4引起的beta2(beta2(+/-))的删除。用选择性抗体进行的免疫沉淀表明,在两个区域中,[(3)H]表巴替丁结合位点中超过70%仅包含alpha4和beta2亚基。随后,用蛋白质印迹分析了α4和β2野生型和杂合子的皮层和丘脑中α4和β2亚基的含量。 alpha4的部分删除减少,而beta2的部分删除增加了组装受体中alpha4亚基的相对比例。尽管这些方法不能准确鉴定野生型皮质和丘脑中存在的亚型的化学计量,但它们确实证明了alpha4(+/-)和beta2(+/-)基因型的皮质和丘脑nAChR在相对表达上有所不同α4和β2亚基的一个结果对应于部分基因缺失后观察到的相对功能变化。这些结果强烈暗示具有不同化学计量的α4β2-nAChR在天然组织中表达。

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