Automated patch-clamp recordings for detecting activators and inhibitors of the epithelial sodium channel (ENaC).

IF 2.9 4区 医学 Q2 PHYSIOLOGY
Florian Sure, Markus Rapedius, Alexei Diakov, Marko Bertog, Alison Obergrussberger, Niels Fertig, Christoph Korbmacher, Alexandr V Ilyaskin
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引用次数: 0

Abstract

The epithelial sodium channel (ENaC) is crucial for sodium absorption in several epithelial tissues including lung and kidney. Its involvement in various renal and pulmonary disorders makes ENaC a potential drug target. High-throughput screening using the automated patch-clamp (APC) technique appears to be a promising approach to discover novel ENaC modulators with (patho-)physiological and therapeutic implications. The aim of this methodological study was to establish APC measurements of ENaC-mediated currents. First, we confirmed functional expression of ENaC in a HEK293 cell line stably transfected with human αβγ-ENaC using conventional manual whole-cell patch-clamp recordings. For APC measurements, a standard enzymatic cell-detachment procedure was used to prepare single cell suspensions. This resulted in a high success rate of APC recordings with amiloride inhibitable ENaC currents. Using a γ-inhibitory peptide and the small molecule ENaC activator S3969, we demonstrate that APC recordings could reveal inhibitory as well as stimulatory effects on ENaC. Interestingly, the enzymatic cell-detachment protocol resulted in partial proteolytic ENaC activation. The portion of proteolytically activated channels could be reduced by prolonged incubation of suspended cells in cell culture medium. This recovery protocol enhanced the relative stimulatory effect of chymotrypsin, a prototypical serine protease known to cause proteolytic ENaC activation. Thus, this protocol may be particularly useful for identifying novel ENaC activators mimicking proteolytic channel activation. In conclusion, we have established a high-throughput screening method for the identification of novel ENaC activators and inhibitors using APC.

用于检测上皮钠通道(ENaC)的激活剂和抑制剂的自动膜片钳记录。
上皮钠通道(ENaC)在包括肺和肾在内的几种上皮组织中对钠的吸收至关重要。ENaC参与多种肾脏和肺部疾病,使其成为潜在的药物靶点。使用自动膜片钳(APC)技术进行高通量筛选似乎是一种很有前途的方法,可以发现具有(病理)生理和治疗意义的新型ENaC调节剂。本方法学研究的目的是建立enec介导电流的APC测量。首先,我们利用传统的手工全细胞膜片钳记录技术,在稳定转染人αβγ-ENaC的HEK293细胞系中证实了ENaC的功能表达。对于APC的测量,使用标准的酶解细胞分离程序来制备单细胞悬浮液。这使得amiloride抑制ENaC电流的APC记录成功率很高。使用γ-抑制肽和小分子ENaC激活剂S3969,我们证明APC记录可以显示ENaC的抑制和刺激作用。有趣的是,酶解细胞分离方案导致ENaC部分蛋白水解激活。悬浮细胞在细胞培养基中长时间孵育可降低蛋白水解激活通道的比例。这种恢复方案增强了凝乳胰蛋白酶的相对刺激作用,凝乳胰蛋白酶是一种典型的丝氨酸蛋白酶,已知可引起蛋白水解ENaC激活。因此,该方案对于鉴定模拟蛋白水解通道激活的新型ENaC激活剂可能特别有用。综上所述,我们建立了一种利用APC鉴定新型ENaC激活剂和抑制剂的高通量筛选方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
8.80
自引率
2.20%
发文量
121
审稿时长
4-8 weeks
期刊介绍: Pflügers Archiv European Journal of Physiology publishes those results of original research that are seen as advancing the physiological sciences, especially those providing mechanistic insights into physiological functions at the molecular and cellular level, and clearly conveying a physiological message. Submissions are encouraged that deal with the evaluation of molecular and cellular mechanisms of disease, ideally resulting in translational research. Purely descriptive papers covering applied physiology or clinical papers will be excluded. Papers on methodological topics will be considered if they contribute to the development of novel tools for further investigation of (patho)physiological mechanisms.
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