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评估激动剂与神经体液受体结合的三元模型。

Assessment of a ternary model for the binding of agonists to neurohumoral receptors.

作者信息

Lee T W, Sole M J, Wells J W

出版信息

Biochemistry. 1986 Nov 4;25(22):7009-20. doi: 10.1021/bi00370a038.

Abstract

A frequently cited variant of the "mobile receptor" hypothesis has been examined for its ability to describe the binding of agonists at neurohumoral receptors that operate via a guanylyl nucleotide binding protein. The model involves a reversible association between the receptor (R) and the G protein (G). Agonists (A) bind with different affinity to R and to the RG complex; similarly, G differentiates between R and the AR complex. Theoretical binding curves calculated according to the model have been analyzed in terms of the Hill equation and as a mixture of independent and noninteracting sites. The model is shown to be compatible in some respects with reported data on the binding of agonists to the beta-adrenergic receptor but not to the muscarinic cholinergic or D2 dopaminergic receptors. It is difficult to reconcile with the reported effects of guanylyl nucleotides, magnesium, and N-ethylmaleimide on the binding of agonists at any neurohumoral receptor.

摘要

“移动受体”假说的一个经常被引用的变体已被检验其描述激动剂在通过鸟苷酸结合蛋白起作用的神经体液受体上结合的能力。该模型涉及受体(R)和G蛋白(G)之间的可逆缔合。激动剂(A)以不同亲和力与R以及RG复合物结合;同样,G能区分R和AR复合物。根据该模型计算出的理论结合曲线已根据希尔方程并作为独立且非相互作用位点的混合物进行了分析。结果表明,该模型在某些方面与关于激动剂与β-肾上腺素能受体结合的报道数据相符,但与毒蕈碱型胆碱能或D2多巴胺能受体的情况不符。很难与关于鸟苷酸、镁和N-乙基马来酰亚胺对任何神经体液受体上激动剂结合的报道效应相协调。

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