Members of the Arabidopsis AtTPK/KCO family form homomeric vacuolar channels in planta

同色 双分子荧光互补 化学 蛋白质亚单位 离子通道 拟南芥 胞浆 细胞生物学 生物物理学 蛋白质片段互补分析 异源表达 生物化学 互补 生物 基因 突变体 受体 重组DNA
作者
Camilla Voelker,Diana Schmidt,Bernd Mueller‐Roeber,Katrin Czempinski
出处
期刊:Plant Journal [Wiley]
卷期号:48 (2): 296-306 被引量:157
标识
DOI:10.1111/j.1365-313x.2006.02868.x
摘要

Summary The Arabidopsis thaliana K + channel family of AtTPK/KCO proteins consists of six members including a ‘single‐pore’ (K ir ‐type) and five ‘tandem‐pore’ channels. AtTPK4 is currently the only ion channel of this family for which a function has been demonstrated in planta . The protein is located at the plasma membrane forming a voltage‐independent K + channel that is blocked by extracellular calcium ions. In contrast, AtTPK1 is a tonoplast‐localized protein, that establishes a K + ‐selective, voltage‐independent ion channel activated by cytosolic calcium when expressed in a heterologous system, i.e. yeast. Here, we provide evidence that other AtTPK/KCO channel subunits, i.e. AtTPK2, AtTPK3, AtTPK5 and AtKCO3, are also targeted to the vacuolar membrane, opening the possibility that they interact at the target membrane to form heteromeric ion channels. However, when testing the cellular expression patterns of AtTPK / KCO genes we observed distinct expression domains that overlap in only a few tissues of the Arabidopsis plant, making it unlikely that different channel subunits interact to form heteromeric channels. This conclusion was substantiated by in planta expression of combinations of selected tonoplast AtTPK/KCO proteins. Fluorescence resonance energy transfer assays indicate that protein interaction occurs between identical channel subunits (most efficiently between AtTPK1 or AtKCO3) but not between different channel subunits. The finding could be confirmed by bimolecular fluorescence complementation assays. We conclude that tonoplast‐located AtTPK/KCO subunits form homomeric ion channels in vivo .
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