Singh A, Hildebrand M E, Garcia E, Snutch T P
University of British Columbia, Vancouver, British Columbia, Canada.
Br J Pharmacol. 2010 Jul;160(6):1464-75. doi: 10.1111/j.1476-5381.2010.00786.x.
SKF96365 (SKF), originally identified as a blocker of receptor-mediated calcium entry, is widely used diagnostically, as a blocker of transient receptor potential canonical type (TRPC) channels. While SKF has been used as a tool to define the functional roles of TRPC channels in various cell and tissue types, there are notable overlapping physiological and pathophysiological associations between TRPC channels and low-voltage-activated (LVA) T-type calcium channels. The activity of SKF against T-type Ca channels has not been previously explored, and here we systematically investigated the effects of SKF on recombinant and native voltage-gated Ca channel-mediated currents.
Effects of SKF on recombinant Ca channels were studied under whole-cell patch clamp conditions after expression in HEK293 cells. The effect of SKF on cerebellar Purkinje cells (PCs) expressing native T-type Ca channels was also assessed.
SKF blocked recombinant Ca channels, representative of each of the three main molecular genetic classes (Ca(V)1, Ca(V)2 and Ca(V)3) at concentrations typically utilized to assay TRPC function (10 microM). Particularly, human Ca(V)3.1 T-type Ca channels were more potently inhibited by SKF (IC(50) approximately 560 nM) in our experiments than previously reported for similarly expressed TRPC channels. SKF also inhibited native Ca(V)3.1 T-type currents in a rat cerebellar PC slice preparation.
SKF was a potent blocker of LVA T-type Ca channels. We suggest caution in the interpretation of results using SKF alone as a diagnostic agent for TRPC activity in native tissues.
SKF96365(SKF)最初被鉴定为受体介导的钙内流阻滞剂,作为瞬时受体电位经典型(TRPC)通道的阻滞剂被广泛用于诊断。虽然SKF已被用作确定TRPC通道在各种细胞和组织类型中的功能作用的工具,但TRPC通道与低电压激活(LVA)T型钙通道之间存在明显的生理和病理生理关联重叠。此前尚未研究过SKF对T型钙通道的活性,在此我们系统地研究了SKF对重组和天然电压门控钙通道介导电流的影响。
在HEK293细胞中表达后,在全细胞膜片钳条件下研究SKF对重组钙通道的影响。还评估了SKF对表达天然T型钙通道的小脑浦肯野细胞(PCs)的影响。
在通常用于检测TRPC功能的浓度(10 microM)下,SKF阻断了代表三种主要分子遗传类型(Ca(V)1、Ca(V)2和Ca(V)3)的重组钙通道。特别地,在我们的实验中,人Ca(V)3.1 T型钙通道比先前报道的类似表达的TRPC通道更有效地被SKF抑制(IC(50)约为560 nM)。SKF还在大鼠小脑PC切片制备中抑制了天然Ca(V)3.1 T型电流。
SKF是LVA T型钙通道的有效阻滞剂。我们建议在仅使用SKF作为天然组织中TRPC活性的诊断剂来解释结果时要谨慎。