Department of Physiology and Cellular Biophysics, Department of Pharmacology and Molecular Signaling, Columbia University Vagelos College of Physicians and Surgeons, New York, NY, USA.
J Physiol. 2020 May;598(9):1683-1693. doi: 10.1113/JP276544. Epub 2020 Apr 21.
High-voltage-activated calcium (Ca 1/Ca 2) channels translate action potentials into Ca influx in excitable cells to control essential biological processes that include; muscle contraction, synaptic transmission, hormone secretion and activity-dependent regulation of gene expression. Modulation of Ca 1/Ca 2 channel activity is a powerful mechanism to regulate physiology, and there are a host of intracellular signalling molecules that tune different aspects of Ca channel trafficking and gating for this purpose. Beyond normal physiological regulation, the diverse Ca channel modulatory mechanisms may potentially be co-opted or interfered with for therapeutic benefits. Ca 1/Ca 2 channels are potently inhibited by a four-member sub-family of Ras-like GTPases known as RGK (Rad, Rem, Rem2, Gem/Kir) proteins. Understanding the mechanisms by which RGK proteins inhibit Ca 1/Ca 2 channels has led to the development of novel genetically encoded Ca channel blockers with unique properties; including, chemo- and optogenetic control of channel activity, and blocking channels either on the basis of their subcellular localization or by targeting an auxiliary subunit. These genetically encoded Ca channel inhibitors have outstanding utility as enabling research tools and potential therapeutics.
高电压激活钙 (Ca1/Ca2) 通道将动作电位转化为兴奋细胞中的钙内流,以控制包括肌肉收缩、突触传递、激素分泌和活动依赖性基因表达调节在内的基本生物过程。Ca1/Ca2 通道活性的调节是调节生理机能的一种强大机制,有许多细胞内信号分子为此目的调节不同方面的钙通道运输和门控。除了正常的生理调节之外,多样化的钙通道调节机制可能会被潜在地利用或干扰以获得治疗益处。四个 Ras 样 GTP 酶亚家族成员(Rad、Rem、Rem2、Gem/Kir)的 RGK(Rad、Rem、Rem2、Gem/Kir)蛋白可强效抑制 Ca1/Ca2 通道。了解 RGK 蛋白抑制 Ca1/Ca2 通道的机制,导致了具有独特特性的新型基因编码钙通道阻断剂的发展;包括基于通道亚细胞定位或靶向辅助亚基的化学遗传和光遗传学控制通道活性,以及基于通道亚细胞定位或靶向辅助亚基的阻断通道。这些基因编码的钙通道抑制剂作为辅助研究工具和潜在的治疗药物具有出色的应用价值。