Neuroscience Research, GPRD, Abbott, Ludwigshafen, Germany.
Br J Pharmacol. 2012 Oct;167(4):741-59. doi: 10.1111/j.1476-5381.2012.02069.x.
P/Q-type calcium channels are high-voltage-gated calcium channels contributing to vesicle release at synaptic terminals. A number of neurological diseases have been attributed to malfunctioning of P/Q channels, including ataxia, migraine and Alzheimer's disease. To date, only two specific P/Q-type blockers are known: both are peptides deriving from the spider venom of Agelenopsis aperta, ω-agatoxins. Other peptidic calcium channel blockers with activity at P/Q channels are available, albeit with less selectivity. A number of low molecular weight compounds modulate P/Q-type currents with different characteristics, and some exhibit a peculiar bidirectional pattern of modulation. Interestingly, there are a number of therapeutics in clinical use, which also show P/Q channel activity. Because selectivity as well as the exact mode of action is different between all P/Q-type channel modulators, the interpretation of clinical and experimental data is complicated and needs a comprehensive understanding of their target profile. The situation is further complicated by the fact that information on potency varies vastly in the literature, which may be the result of different experimental systems, conditions or the splice variants of the P/Q channel. This review attempts to provide a comprehensive overview of the compounds available that affect the P/Q-type channel and should help with the interpretation of results of in vitro experiments and animal models. It also aims to explain some clinical observations by implementing current knowledge about P/Q channel modulation of therapeutically used non-selective drugs. Chances and challenges of the development of P/Q channel-selective molecules are discussed.
P/Q 型钙通道是高电压门控钙通道,有助于突触末梢囊泡释放。许多神经疾病都归因于 P/Q 通道的功能障碍,包括共济失调、偏头痛和阿尔茨海默病。迄今为止,仅已知两种特定的 P/Q 型阻断剂:均为源自 Agelenopsis aperta 蜘蛛毒液的肽,ω-蜘蛛毒素。其他在 P/Q 通道具有活性的肽类钙通道阻断剂虽然选择性较低,但也有可用的。许多低分子量化合物以不同的特性调节 P/Q 型电流,有些表现出特殊的双向调节模式。有趣的是,有许多治疗药物在临床使用中也显示出 P/Q 通道活性。由于所有 P/Q 型钙通道调节剂的选择性以及确切作用模式都不同,因此解释临床和实验数据比较复杂,需要全面了解其靶标特征。情况变得更加复杂,因为文献中关于效力的信息差异很大,这可能是由于不同的实验系统、条件或 P/Q 通道的剪接变体所致。本综述试图全面概述影响 P/Q 型通道的可用化合物,并有助于解释体外实验和动物模型的结果。它还旨在通过实施关于治疗性非选择性药物对 P/Q 通道调节的现有知识来解释一些临床观察。讨论了开发 P/Q 通道选择性分子的机会和挑战。