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Co-expression of neuronal alpha7 and L247Talpha7 mutant subunits yields hybrid nicotinic receptors with properties of both wild-type alpha7 and alpha7 mutant homomeric receptors.

机译:神经元α7和L247Talpha7突变体亚基的共表达产生具有自然野生型α7和α7突变体同源受体特性的杂种烟碱样受体。

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摘要

Injection of cDNA encoding the neuronal alpha(7) subunit into Xenopus oocytes yields homomeric receptors showing responses to AcCho that have low affinity, fast desensitization, nonlinear current-voltage (I-V) relation, and sensitivity to alpha-bungarotoxin (alpha-BTX) and 5-hydroxytryptamine (5HT), both substances acting as antagonists, Mutation of the Leu-247, located in the channel domain, changes 5HT from an antagonist to an agonist, slows the rate of desensitization, renders the I-V relation linear, and increases the affinity for acetylcholine (AcCho), A study was made of receptors expressed after injecting Xenopus oocytes with mixtures of cDNAs encoding the wild-type alpha(7) (WT alpha(7)) and the L247T alpha(7) mutated nicotinic AcCho receptors (nAcChoRs), The receptors expressed were again blocked by alpha-bungarotoxin (100 nM) but exhibited both WT alpha(7) and alpha(7) mutant functional characteristics. Out of eight different types of hybrid receptors identified, most were inhibited by 5HT (1 mM) and showed low sensitivity to AcCho, like the WT alpha(7) receptors, but exhibited a slow rate of desensitization and an I-V relation similar to those of alpha(7) mutant receptors, Together, these findings indicate that the increased nAcChoR affinity and the decreased nAcChoR desensitization after Leu-247 mutation are uncoupled events, We propose that receptor diversity is predicted by permutations of WT alpha(7) and L247T alpha(7) subunits in a pentameric symmetrical model and that even partial replacement of Leu-247 with a polar residue within the leucine ring in the channel domain considerably influences the properties of neuronal alpha(7) nAcChoRs.
机译:将编码神经元alpha(7)亚基的cDNA注射到非洲爪蟾卵母细胞中,产生对AcCho的响应,具有低亲和力,快速脱敏,非线性电流-电压(IV)关系以及对α-真菌毒素(alpha-BTX)和5-羟基色胺(5HT)都是拮抗剂,位于通道域的Leu-247突变可使5HT从拮抗剂变为激动剂,减慢脱敏速率,使IV关系呈线性,并增加对乙酰胆碱(AcCho)的亲和力,对注入非洲爪蟾卵母细胞与编码野生型alpha(7)(WT alpha(7))和L247T alpha(7)突变烟碱型AcCho受体( nAcChoRs),表达的受体再次被α-真菌毒素(100 nM)阻断,但同时具有WT alpha(7)和alpha(7)突变体功能特征。在鉴定出的八种不同类型的杂合受体中,大多数被5HT(1 mM)抑制并且对AcCho的敏感性较低,就像WT alpha(7)受体一样,但脱敏速度较慢,IV关系类似于alpha(7)突变受体,在一起,这些发现表明,Leu-247突变后增加的nAcChoR亲和力和减少的nAcChoR脱敏是非偶合事件,我们建议通过WT alpha(7)和L247T alpha( 7)五聚体对称模型中的亚基,甚至在通道域中亮氨酸环内的极性残基部分取代Leu-247都极大地影响神经元alpha(7)nAcChoRs的特性。

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