Zühlke R D, Zhang H J, Joho R H
Department of Cell Biology and Neuroscience, University of Texas Southwestern Medical Center, Dallas 75235-9111.
Recept Channels. 1994;2(3):237-48.
We examined the role of two invariant cysteines, one in S2 and one in S6, of the voltage-gated K+ channel Kv2.1 (DRK1) by site-directed mutagenesis and subsequent channel expression in Xenopus oocytes. Despite the conserved nature of the side chain, substitutions in S2 were generally tolerated. Fourteen of 17 substitutions for Cys 232 in S2 resulted in voltage-sensitive K(+)-selective channels, for the most part with minor changes in voltage dependence and channel kinetics. In contrast, only 7 of 19 substitutions for Cys 393 in S6 preserved channel function. Furthermore, the side chain at this position influenced deactivation kinetics, inactivation kinetics, and ion-permeation properties. The chemical nature but not the volume of the side chain governed the rate constants of deactivation and inactivation. In contrast, changes of the volume of the side chain but not of its chemical properties correlated with changes in ion conductance. Our results indicate that the side chain at position 393 in S6 is involved in conformational changes during transitions between open and closed states and that it also contributes to the control of ion permeation.
我们通过定点诱变以及随后在非洲爪蟾卵母细胞中进行通道表达,研究了电压门控钾通道Kv2.1(DRK1)中两个不变半胱氨酸的作用,一个在S2区,另一个在S6区。尽管侧链具有保守性,但S2区的取代通常是可耐受的。S2区中半胱氨酸232的17个取代中有14个产生了电压敏感的钾选择性通道,大多数情况下电压依赖性和通道动力学仅有微小变化。相比之下,S6区中半胱氨酸393的19个取代中只有7个保留了通道功能。此外,该位置的侧链影响失活动力学、失活动力学和离子通透特性。侧链的化学性质而非体积决定了失活和失活的速率常数。相反,侧链体积的变化而非其化学性质的变化与离子电导的变化相关。我们的结果表明,S6区中位置393处的侧链参与了开放和关闭状态之间转变过程中的构象变化,并且它也有助于控制离子通透。