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摇椅通道S4段电荷中和突变后的电压不敏感门控。

Voltage-insensitive gating after charge-neutralizing mutations in the S4 segment of Shaker channels.

作者信息

Bao H, Hakeem A, Henteleff M, Starkus J G, Rayner M D

机构信息

Bekesy Laboratory of Neurobiology, Pacific Biomedical Research Center, School of Medicine, University of Hawaii, Honolulu, Hawaii 96822-2359, USA.

出版信息

J Gen Physiol. 1999 Jan;113(1):139-51. doi: 10.1085/jgp.113.1.139.

Abstract

Shaker channel mutants, in which the first (R362), second (R365), and fourth (R371) basic residues in the S4 segment have been neutralized, are found to pass potassium currents with voltage-insensitive kinetics when expressed in Xenopus oocytes. Single channel recordings clarify that these channels continue to open and close from -160 to +80 mV with a constant opening probability (Po). Although Po is low ( approximately 0.15) in these mutants, mean open time is voltage independent and similar to that of control Shaker channels. Additionally, these mutant channels retain characteristic Shaker channel selectivity, sensitivity to block by 4-aminopyridine, and are partially blocked by external Ca2+ ions at very negative potentials. Furthermore, mean open time is approximately doubled, in both mutant channels and control Shaker channels, when Rb+ is substituted for K+ as the permeant ion species. Such strong similarities between mutant channels and control Shaker channels suggests that the pore region has not been substantially altered by the S4 charge neutralizations. We conclude that single channel kinetics in these mutants may indicate how Shaker channels would behave in the absence of voltage sensor input. Thus, mean open times appear primarily determined by voltage-insensitive transitions close to the open state rather than by voltage sensor movement, even in control, voltage-sensitive Shaker channels. By contrast, the low and voltage-insensitive Po seen in these mutant channels suggests that important determinants of normal channel opening derive from electrostatic coupling between S4 charges and the pore domain.

摘要

在摇椅通道突变体中,S4片段的第一个(R362)、第二个(R365)和第四个(R371)碱性残基已被中和,当在非洲爪蟾卵母细胞中表达时,发现其通过钾电流的动力学对电压不敏感。单通道记录表明,这些通道在-160至+80 mV范围内持续开放和关闭,开放概率(Po)恒定。尽管这些突变体中的Po较低(约为0.15),但平均开放时间与电压无关,且与对照摇椅通道相似。此外,这些突变通道保留了摇椅通道的特征选择性、对4-氨基吡啶阻断的敏感性,并且在非常负的电位下会被外部Ca2+离子部分阻断。此外,当用Rb+替代K+作为通透离子时,突变通道和对照摇椅通道的平均开放时间均增加了约一倍。突变通道与对照摇椅通道之间的这种强烈相似性表明,孔区域并未因S4电荷中和而发生实质性改变。我们得出结论,这些突变体中的单通道动力学可能表明摇椅通道在没有电压传感器输入时的行为方式。因此,即使在对照的、对电压敏感的摇椅通道中,平均开放时间似乎主要由接近开放状态的电压不敏感转变决定,而不是由电压传感器的移动决定。相比之下,这些突变通道中低且对电压不敏感的Po表明,正常通道开放的重要决定因素来自S4电荷与孔结构域之间的静电耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b576/2222989/811f2575548a/JGP7807.f2.jpg

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