Department of Neurology, Georg-August-University, Göttingen, Germany.
Physiol Res. 2013;62(1):95-105. doi: 10.33549/physiolres.932264. Epub 2012 Nov 22.
Heterologous expression of Kir channels offers a tool to modulate excitability of neurons which provide insight into Kir channel functions in general. Inwardly-rectifying K+ channels (Kir channels) are potential candidate proteins to hyperpolarize neuronal cell membranes. However, heterologous expression of inwardly-rectifying K+ channels has previously proven to be difficult. This was mainly due to a high toxicity of the respective Kir channel expression. We investigated the putative role of a predominantly glial-expressed, weakly rectifying Kir channel (Kir4.1 channel subunit; KCNJ10) in modulating electrophysiological properties of a motoneuron-like cell culture (NSC-34). Transfection procedures using an EGFP-tagged Kir4.1 protein in this study proved to have no toxic effects on NSC-34 cells. Using whole cell-voltage clamp, a substantial increase of inward rectifying K+ currents as well as hyperpolarization of the cell membrane was observed in Kir4.1-transfected cells. Na+ inward currents, observed in NSC-34 controls, were absent in Kir4.1/EGFP motoneuronal cells. The Kir4.1-transfection did not influence the NaV1.6 sodium channel expression. This study demonstrates the general feasibility of a heterologous expression of a weakly inward-rectifying K+ channel (Kir4.1 subunit) and shows that in vitro overexpression of Kir4.1 shifts electrophysiological properties of neuronal cells to a more glial-like phenotype and may therefore be a candidate tool to dampen excitability of neurons in experimental paradigms.
异源表达 Kir 通道为调节神经元兴奋性提供了一种工具,这为研究 Kir 通道的一般功能提供了深入的了解。内向整流钾通道(Kir 通道)是使神经元细胞膜超极化的潜在候选蛋白。然而,异源表达内向整流钾通道以前被证明是困难的。这主要是由于各自的 Kir 通道表达的毒性很高。我们研究了一种主要在神经胶质细胞中表达的、弱整流的 Kir 通道(Kir4.1 通道亚基;KCNJ10)在调节类似于运动神经元的细胞培养物(NSC-34)的电生理特性中的可能作用。在这项研究中,使用 EGFP 标记的 Kir4.1 蛋白的转染程序对 NSC-34 细胞没有毒性作用。使用全细胞膜片钳技术,在 Kir4.1 转染细胞中观察到内向整流钾电流显著增加和细胞膜超极化。在 NSC-34 对照中观察到的 Na+内向电流在 Kir4.1/EGFP 运动神经元细胞中不存在。Kir4.1 转染并不影响 NaV1.6 钠通道的表达。这项研究证明了弱内向整流钾通道(Kir4.1 亚基)异源表达的一般可行性,并表明体外过表达 Kir4.1 将神经元细胞的电生理特性转变为更类似神经胶质的表型,因此可能成为在实验模型中抑制神经元兴奋性的候选工具。