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药物与L型钙离子通道相互作用的分子基础。

Molecular basis of drug interaction with L-type Ca2+ channels.

作者信息

Mitterdorfer J, Grabner M, Kraus R L, Hering S, Prinz H, Glossmann H, Striessnig J

机构信息

Institut für Biochemische Pharmakologie, Innsbruck, Austria.

出版信息

J Bioenerg Biomembr. 1998 Aug;30(4):319-34. doi: 10.1023/a:1021933504909.

Abstract

Different types of voltage-gated Ca2+ channels exist in the plasma membrane of electrically excitable cells. By controlling depolarization-induced Ca2+ entry into cells they serve important physiological functions, such as excitation-contraction coupling, neurotransmitter and hormone secretion, and neuronal plasticity. Their function is fine-tuned by a variety of modulators, such as enzymes and G-proteins. Block of so-called L-type Ca2+ channels by drugs is exploited as a therapeutic principle to treat cardiovascular disorders, such as hypertension. More recently, block of so-called non-L-type Ca2+ channels was found to exert therapeutic effects in the treatment of severe pain and ischemic stroke. As the subunits of different Ca2+ channel types have been cloned, the modulatory sites for enzymes, G-proteins, and drugs can now be determined using molecular engineering and heterologous expression. Here we summarize recent work that has allowed us to determine the sites of action of L-type Ca2+ channel modulators. Together with previous biochemical, electrophysiological, and drug binding data these results provide exciting insight into the molecular pharmacology of this voltage-gated Ca2+ channel family.

摘要

不同类型的电压门控Ca2+通道存在于电可兴奋细胞的质膜中。通过控制去极化诱导的Ca2+进入细胞,它们发挥着重要的生理功能,如兴奋-收缩偶联、神经递质和激素分泌以及神经元可塑性。它们的功能由多种调节剂进行微调,如酶和G蛋白。药物阻断所谓的L型Ca2+通道被用作治疗心血管疾病(如高血压)的治疗原则。最近,发现阻断所谓的非L型Ca2+通道在治疗严重疼痛和缺血性中风方面具有治疗作用。由于不同类型Ca2+通道的亚基已被克隆,现在可以使用分子工程和异源表达来确定酶、G蛋白和药物的调节位点。在这里,我们总结了最近的工作,这些工作使我们能够确定L型Ca2+通道调节剂的作用位点。这些结果与以前的生化、电生理和药物结合数据一起,为这个电压门控Ca2+通道家族的分子药理学提供了令人兴奋的见解。

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