Center for Physiology and Pharmacology, Department of Neurophysiology and Neuropharmacology, Medical University of Vienna, Waehringerstrasse 13a, 1090, Vienna, Austria.
Department of Pharmacology and Toxicology, University of Vienna, Althanstrasse 14, UZA 2, A-1090, Vienna, Austria.
Sci Rep. 2018 Jan 12;8(1):631. doi: 10.1038/s41598-017-18919-1.
Inactivation of voltage-gated Na channels (VGSC) is essential for the regulation of cellular excitability. The molecular rearrangement underlying inactivation is thought to involve the intracellular linker between domains III and IV serving as inactivation lid, the receptor for the lid (domain III S4-S5 linker) and the pore-lining S6 segements. To better understand the role of the domain IV S6 segment in inactivation we performed a cysteine scanning mutagenesis of this region in rNav 1.4 channels and screened the constructs for perturbations in the voltage-dependence of steady state inactivation. This screen was performed in the background of wild-type channels and in channels carrying the mutation K1237E, which profoundly alters both permeation and gating-properties. Of all tested constructs the mutation I1581C was unique in that the mutation-induced gating changes were strongly influenced by the mutational background. This suggests that I1581 is involved in specific short-range interactions during inactivation. In recently published crystal structures VGSCs the respective amino acids homologous to I1581 appear to control a bend of the S6 segment which is critical to the gating process. Furthermore, I1581 may be involved in the transmission of the movement of the DIII voltage-sensor to the domain IV S6 segment.
失活电压门控钠通道(VGSC)对于调节细胞兴奋性至关重要。失活的分子重排被认为涉及作为失活盖的域 III 和 IV 之间的细胞内接头,盖的受体(域 III S4-S5 接头)和孔衬 S6 片段。为了更好地理解域 IV S6 片段在失活中的作用,我们对 rNav 1.4 通道中的该区域进行了半胱氨酸扫描突变,并筛选了构象对稳态失活电压依赖性的影响。该筛选是在野生型通道和携带突变 K1237E 的通道的背景下进行的,该突变强烈改变了通透性和门控特性。在所有测试的构建体中,突变 I1581C 是唯一的,因为突变诱导的门控变化受到突变背景的强烈影响。这表明 I1581 参与失活过程中的特定短程相互作用。在最近发表的 VGSC 晶体结构中,与 I1581 同源的相应氨基酸似乎控制 S6 片段的弯曲,这对于门控过程至关重要。此外,I1581 可能参与将 DIII 电压传感器的运动传递到域 IV S6 片段。