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使用膜电位敏感染料对电压门控钠通道进行功能测定。

Functional assay of voltage-gated sodium channels using membrane potential-sensitive dyes.

作者信息

Felix John P, Williams Brande S, Priest Birgit T, Brochu Richard M, Dick Ivy E, Warren Vivien A, Yan Lizhen, Slaughter Robert S, Kaczorowski Gregory J, Smith McHardy M, Garcia Maria L

机构信息

Department of Ion Channels, Merck Research Laboratories, Rahway, NJ 07065, USA.

出版信息

Assay Drug Dev Technol. 2004 Jun;2(3):260-8. doi: 10.1089/1540658041410696.

Abstract

The discovery of novel therapeutic agents that act on voltage-gated sodium channels requires the establishment of high-capacity screening assays that can reliably measure the activity of these proteins. Fluorescence resonance energy transfer (FRET) technology using membrane potential-sensitive dyes has been shown to provide a readout of voltage-gated sodium channel activity in stably transfected cell lines. Due to the inherent rapid inactivation of sodium channels, these assays require the presence of a channel activator to prolong channel opening. Because sodium channel activators and test compounds may share related binding sites on the protein, the assay protocol is critical for the proper identification of channel inhibitors. In this study, high throughput, functional assays for the voltage-gated sodium channels, hNa(V)1.5 and hNa(V)1.7, are described. In these assays, channels stably expressed in HEK cells are preincubated with test compound in physiological medium and then exposed to a sodium channel activator that slows channel inactivation. Sodium ion movement through open channels causes membrane depolarization that can be measured with a FRET dye membrane potential-sensing system, providing a large and reproducible signal. Unlike previous assays, the signal obtained in the agonist initiation assay is sensitive to all sodium channel modulators that were tested and can be used in high throughput mode, as well as in support of Medicinal Chemistry efforts for lead optimization.

摘要

发现作用于电压门控钠通道的新型治疗药物需要建立能够可靠测量这些蛋白质活性的高通量筛选检测方法。使用膜电位敏感染料的荧光共振能量转移(FRET)技术已被证明可在稳定转染的细胞系中提供电压门控钠通道活性的读数。由于钠通道固有的快速失活特性,这些检测需要存在通道激活剂以延长通道开放时间。由于钠通道激活剂和测试化合物可能在蛋白质上共享相关结合位点,因此检测方案对于正确鉴定通道抑制剂至关重要。在本研究中,描述了针对电压门控钠通道hNa(V)1.5和hNa(V)1.7的高通量功能检测方法。在这些检测中,将在HEK细胞中稳定表达的通道与测试化合物在生理培养基中预孵育,然后暴露于一种减缓通道失活的钠通道激活剂。钠离子通过开放通道的移动会导致膜去极化,这可以用FRET染料膜电位传感系统进行测量,从而提供一个大且可重复的信号。与以前的检测方法不同,在激动剂启动检测中获得的信号对所有测试的钠通道调节剂都敏感,并且可用于高通量模式,以及支持药物化学领域的先导化合物优化工作。

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