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大鼠脑阿片μ受体-配体相互作用的热力学分析

Thermodynamic analysis of rat brain opioid mu-receptor-ligand interaction.

作者信息

Zeman P, Tóth G, Kvetnanský R

出版信息

Gen Physiol Biophys. 1987 Jun;6(3):237-48.

PMID:3040520
Abstract

Opioid mu-receptors are membrane bound receptors. The mechanism by which they transduce their biological effect into the inner compartment of the postsynaptic cell is still not fully understood. The present study was attempted to the measurement of changes of the thermodynamic parameters of the receptor--agonist/antagonist interaction. We have set up the binding assays of a mu-receptor agonist (3H-dihydromorphine) as well as an antagonist (3H-naloxone). The saturation isotherms of both ligands have been assayed at various temperatures and from the resulting KD values the standard changes of Gibbs energy, enthalpy and entropy have been calculated. While the binding of the mu-receptor agonist 3H-dihydromorphine appears to be entropy driven (delta S0 = 230 J mol-1 K-1) and endothermic (delta H0 = 19 kJ mol-1), the binding of the mu-receptor antagonist 3H-naloxone is apparently driven by a decrease of standard enthalpy (delta H0 = -27 kJ mol-1; i.e. the reaction is exothermic) and is also characterized by an increase of standard entropy (delta S0 = 76 J mol-1 K-1). The maximal number of 3H-naloxone binding sites has to be determined by incubation at 0-4 degrees C. The present data to not support the view that opioid mu-receptors transduce their biological signal through the adenylatecyclase system by a mechanism similar to beta-adrenergically stimulated adenylatecyclase.

摘要

阿片类μ受体是膜结合受体。它们将生物效应转导至突触后细胞内区室的机制仍未完全明了。本研究试图测定受体 - 激动剂/拮抗剂相互作用的热力学参数变化。我们建立了μ受体激动剂(3H - 二氢吗啡)以及拮抗剂(3H - 纳洛酮)的结合测定法。在不同温度下测定了两种配体的饱和等温线,并根据所得的KD值计算了吉布斯自由能、焓和熵的标准变化。虽然μ受体激动剂3H - 二氢吗啡的结合似乎由熵驱动(ΔS0 = 230 J·mol⁻¹·K⁻¹)且是吸热的(ΔH0 = 19 kJ·mol⁻¹),但μ受体拮抗剂3H - 纳洛酮的结合显然由标准焓的降低驱动(ΔH0 = -27 kJ·mol⁻¹;即反应是放热的),并且其特征还在于标准熵的增加(ΔS0 = 76 J·mol⁻¹·K⁻¹)。3H - 纳洛酮结合位点的最大数量必须通过在0 - 4℃下孵育来确定。目前的数据不支持阿片类μ受体通过类似于β - 肾上腺素能刺激的腺苷酸环化酶的机制通过腺苷酸环化酶系统转导其生物信号的观点。

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