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钆离子(Gd3+)和钙敏感性、钠泄漏电流是膜片钳记录中弱膜-玻璃封接的特征。

Gd3+ and calcium sensitive, sodium leak currents are features of weak membrane-glass seals in patch clamp recordings.

作者信息

Boone Adrienne N, Senatore Adriano, Chemin Jean, Monteil Arnaud, Spafford J David

机构信息

Department of Biology, University of Waterloo, Waterloo, Canada.

CNRS, UMR-5203, Institut de Génomique Fonctionnelle, INSERM, U661, Universités de Montpellier 1 & 2, UMR-5203, Montpellier, France.

出版信息

PLoS One. 2014 Jun 19;9(6):e98808. doi: 10.1371/journal.pone.0098808. eCollection 2014.

Abstract

The properties of leaky patch currents in whole cell recording of HEK-293T cells were examined as a means to separate these control currents from expressed sodium and calcium leak channel currents from snail NALCN leak channels possessing both sodium (EKEE) and calcium (EEEE) selectivity filters. Leak currents were generated by the weakening of gigaohm patch seals by artificial membrane rupture using the ZAP function on the patch clamp amplifier. Surprisingly, we found that leak currents generated from the weakened membrane/glass seal can be surprisingly stable and exhibit behavior that is consistent with a sodium leak current derived from an expressible channel. Leaky patch currents differing by 10 fold in size were similarly reduced in size when external sodium ions were replaced with the large monovalent ion NMDG+. Leaky patch currents increased when external Ca2+ (1.2 mM) was lowered to 0.1 mM and were inhibited (>40% to >90%) with 10 µM Gd3+, 100 µM La3+, 1 mM Co2+ or 1 mM Cd2+. Leaky patch currents were relatively insensitive (<30%) to 1 mM Ni2+ and exhibited a variable amount of block with 1 mM verapamil and were insensitive to 100 µM mibefradil or 100 µM nifedipine. We hypothesize that the rapid changes in leak current size in response to changing external cations or drugs relates to their influences on the membrane seal adherence and the electro-osmotic flow of mobile cations channeling in crevices of a particular pore size in the interface between the negatively charged patch electrode and the lipid membrane. Observed sodium leak conductance currents in weak patch seals are reproducible between the electrode glass interface with cell membranes, artificial lipid or Sylgard rubber.

摘要

在HEK - 293T细胞的全细胞记录中,对漏电斑电流的特性进行了研究,以此作为一种手段,将这些对照电流与表达的钠和钙泄漏通道电流区分开来,这些钠和钙泄漏通道电流来自具有钠(EKEE)和钙(EEEE)选择性过滤器的蜗牛NALCN泄漏通道。使用膜片钳放大器上的ZAP功能通过人工膜破裂削弱千兆欧膜片封接来产生泄漏电流。令人惊讶的是,我们发现从弱化的膜/玻璃封接产生的泄漏电流可以出奇地稳定,并且表现出与源自可表达通道的钠泄漏电流一致的行为。当外部钠离子被大单价离子NMDG +取代时,大小相差10倍的漏电斑电流在大小上同样减小。当外部Ca2 +(1.2 mM)降至0.1 mM时,漏电斑电流增加,并被10 μM Gd3 +、100 μM La3 +、1 mM Co2 +或1 mM Cd2 +抑制(> 40%至> 90%)。漏电斑电流对1 mM Ni2 +相对不敏感(< 30%),对1 mM维拉帕米表现出不同程度的阻断,对100 μM米贝地尔或100 μM硝苯地平不敏感。我们推测,泄漏电流大小随外部阳离子或药物变化的快速变化与其对膜封接附着力以及在带负电的膜片电极与脂质膜界面中特定孔径缝隙中流动的阳离子的电渗流的影响有关。在弱膜片封接中观察到的钠泄漏电导电流在电极玻璃与细胞膜、人工脂质或Sylgard橡胶之间是可重复的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22b5/4063719/5fc9fab26327/pone.0098808.g001.jpg

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