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单个突变会强烈改变内向钾离子通道KAT1的钾离子选择性孔道。

Single mutations strongly alter the K+-selective pore of the K(in) channel KAT1.

作者信息

Dreyer I, Becker D, Bregante M, Gambale F, Lehnen M, Palme K, Hedrich R

机构信息

Julius-von-Sachs-Institut für Biowissenschaften, Lehrstuhl Botanik I-Molekulare Pflanzenphysiologie und Biophysik, Würzburg, Germany.

出版信息

FEBS Lett. 1998 Jul 3;430(3):370-6. doi: 10.1016/s0014-5793(98)00694-2.

Abstract

Voltage-dependent potassium uptake channels represent the major pathway for K+ accumulation underlying guard cell swelling and stomatal opening. The core structure of these Shaker-like channels is represented by six transmembrane domains and an amphiphilic pore-forming region between the fifth and sixth domain. To explore the effect of point mutations within the stretch of amino acids lining the K+ conducting pore of KAT1, an Arabidopsis thaliana guard cell K(in) channel, we selected residues deep inside and in the periphery of the pore. The mutations on positions 256 and 267 strongly altered the interaction of the permeation pathway with external Ca2+ ions. Point mutations on position 256 in KAT1 affected the affinity towards Ca2+, the voltage dependence as well as kinetics of the Ca2+ blocking reaction. Among these T256S showed a Ca2+ phenotype reminiscent of an inactivation-like process, a phenomenon unknown for K(in) channels so far. Mutating histidine 267 to alanine, a substitution strongly affecting C-type inactivation in Shaker, this apparent inactivation could be linked to a very slow calcium block. The mutation H267A did not affect gating but hastened the Ca2+ block/unblock kinetics and increased the Ca2+ affinity of KAT1. From the analysis of the presented data we conclude that even moderate point mutations in the pore of KAT1 seem to affect the pore geometry rather than channel gating.

摘要

电压依赖性钾离子吸收通道是保卫细胞肿胀和气孔开放所依赖的钾离子积累的主要途径。这些类Shaker通道的核心结构由六个跨膜结构域以及第五和第六结构域之间的一个两亲性孔形成区域组成。为了探究拟南芥保卫细胞钾离子内向通道KAT1的钾离子传导孔内衬氨基酸序列中的点突变的影响,我们选择了孔内部深处和周边的残基。256位和267位的突变强烈改变了通透途径与外部钙离子的相互作用。KAT1中256位的点突变影响了对钙离子的亲和力、电压依赖性以及钙离子阻断反应的动力学。其中,T256S表现出一种类似于失活过程的钙离子表型,这是迄今为止钾离子内向通道未知的一种现象。将组氨酸267突变为丙氨酸,这种取代强烈影响Shaker中的C型失活,这种明显的失活可能与非常缓慢的钙离子阻断有关。H267A突变不影响门控,但加速了钙离子阻断/解除阻断动力学,并增加了KAT1对钙离子的亲和力。从所呈现数据的分析中我们得出结论,即使是KAT1孔中的适度点突变似乎也会影响孔的几何形状而非通道门控。

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