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AtKuP1: a dual-affinity K+ transporter from Arabidopsis.

机译:AtKuP1:拟南芥的双亲和力K +转运蛋白。

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摘要

Plant roots contain both high- and low-affinity transport systems for uptake of K+ from the soil. In this study, we characterize a K+ transporter that functions in both high- and low-affinity uptake. Using yeast complementation analysis, we isolated a cDNA for a functional K+ transporter from Arabidopsis (referred to as AtKUP1 for Arabidopsis thaliana K+ uptake). When expressed in a yeast mutant, AtKUP1 dramatically increased K+ uptake capacity at both a low and high [K+] range. Kinetic analyses showed that AtKUP1-mediated K+ uptake displays a "biphasic" pattern similar to that observed in plant roots. The transition from the high-affinity phase (K(m) of 44 microM) to the low-affinity phase (K(m) of 11 mM) occurred at 100 to 200 microM external K+. Both low- and high-affinity K+ uptake via AtKUP1 were inhibited by 5 mM or higher concentrations of NaCl. In addition, AtKUP1-mediated K+ uptake was inhibited by K+ channel blockers, including tetraethylammonium, Cs+, and Ba2+. Consistent with a possible function in K+ uptake from the soil, the AtKUP1 gene is primarily expressed in roots. We conclude that the AtKUP1 gene product may function as a K+ transporter in Arabidopsis roots over a broad range of [K+] in the soil.
机译:植物根部包含高亲和力和低亲和力的转运系统,可从土壤吸收钾离子。在这项研究中,我们表征了在高亲和力和低亲和力吸收中都起作用的K +转运蛋白。使用酵母互补分析,我们从拟南芥中分离了功能性K +转运蛋白的cDNA(对于拟南芥K +吸收称为AtKUP1)。当在酵母突变体中表达时,AtKUP1在低和高[K +]范围内均可显着提高K +吸收能力。动力学分析表明,AtKUP1介导的K +吸收表现出类似于植物根部观察到的“双相”模式。从高亲和力相(44 microM的K(m))到低亲和力相(11 mM的K(m))的过渡发生在100到200 microM外部K +处。 5 mM或更高浓度的NaCl抑制通过AtKUP1的低亲和力K +吸收。此外,AtKUP1介导的K +吸收被K +通道阻滞剂(包括四乙铵,Cs +和Ba2 +)抑制。与从土壤中吸收K +的可能功能一致,AtKUP1基因主要在根中表达。我们得出结论,AtKUP1基因产物可能在拟南芥根中的K +转运蛋白上,在土壤中的[K +]范围很广。

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