Department of Biochemistry and Molecular Biology, The University of Chicago, Chicago, IL 60637, USA.
J Gen Physiol. 2010 Nov;136(5):555-68. doi: 10.1085/jgp.201010487.
Voltage-gated ion channels couple conformational change(s) of the voltage-sensing domain to those of the opening of an intracellular gate to allow ionic conduction. Much larger positive potentials are required to couple these conformational changes to the opening of the gate of Shaker K(+) channels with the concurrent mutations V369I, I372L, and S376T (ILT) at the N-terminal end of the S4 segment. We used cut-open oocyte voltage clamp to study the biophysical and thermodynamical properties of heterotetrameric concatemerized channels with different stoichiometries of ILT mutations. The voltage-sensing domains of ILT mutant channels require smaller depolarization to activate but their intracellular gate does not immediately follow the movement of the voltage-sensing domain, requiring larger depolarization to open. Our results demonstrate that each subunit contributes equally to the rightward shift of the conductance-voltage relationship and that a single ILT-containing subunit is sufficient to induce a large enthalpic and entropic barrier, limiting opening of the intracellular gate.
电压门控离子通道将电压感应域的构象变化与细胞内门的打开耦合起来,从而允许离子传导。在 S4 段的 N 端同时突变 V369I、I372L 和 S376T(ILT)的情况下,Shaker K(+) 通道的门打开需要更大的正电势来耦合这些构象变化。我们使用切开的卵母细胞电压钳来研究具有不同 ILT 突变比例的异四聚体串联通道的生物物理和热力学特性。ILT 突变通道的电压感应域需要较小的去极化即可激活,但它们的细胞内门不会立即跟随电压感应域的运动,需要更大的去极化才能打开。我们的结果表明,每个亚基对电导-电压关系的右移贡献相等,并且单个包含 ILT 的亚基足以诱导大的焓和熵障碍,限制细胞内门的打开。