Liu Y, Joho R H
Department of Cell Biology and Neuroscience, The University of Texas Southwestern Medical Center at Dallas, 5323 Harry Hines Boulevard, Dallas, TX 75235-9111, USA.
Pflugers Arch. 1998 Apr;435(5):654-61. doi: 10.1007/s004240050566.
Conservative substitutions of the conserved cysteine 393 (Cys393) in S6 of the voltage-gated K+ channel Kv2.1 predictably alter the stability of the open state and the conductances for K+ and Rb+. The polarity of the side chain at position 393 determines the stability of the open state, probably by interaction of S6 with the narrow part of the ion-conduction pathway; however, the substitutions at position 393 have no effect on the stability of the closed state. An increase in side-chain volume leads to greater K+ conductance; in contrast, gradual decreases in side-chain volume lead to progressively smaller K+ conductances concomitantly with larger Rb+ conductances. Although the substitutions for Cys393 alter open-state stability and ion permeation, they have no effect on block by external or internal tetraethylammonium (TEA). Our data indicate that molecular determinants that are involved in conformational transitions between the open state and the brief closed state (i.e., voltage-independent gating) and ion selectivity are located within the sphere of influence of the conserved Cys393 in S6. This region is physically separated from the voltage-controlled activation gate located on the intracellular side of the K+ channel.
电压门控钾离子通道Kv2.1的S6区中保守的半胱氨酸393(Cys393)的保守性取代可预测地改变了开放状态的稳定性以及钾离子和铷离子的电导率。393位侧链的极性决定了开放状态的稳定性,可能是通过S6与离子传导途径狭窄部分的相互作用;然而,393位的取代对关闭状态的稳定性没有影响。侧链体积的增加导致更大的钾离子电导率;相反,侧链体积的逐渐减小导致钾离子电导率逐渐变小,同时铷离子电导率变大。尽管Cys393的取代改变了开放状态的稳定性和离子通透性,但它们对外部或内部四乙铵(TEA)的阻断没有影响。我们的数据表明,参与开放状态和短暂关闭状态之间构象转变(即电压非依赖性门控)和离子选择性的分子决定因素位于S6中保守的Cys393的影响范围内。该区域与位于钾离子通道胞内侧的电压控制激活门在物理上是分开的。