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蛋白激酶SOS2激活拟南芥H(+)/Ca(2+)反向转运蛋白CAX1,以整合钙运输和耐盐性。

The protein kinase SOS2 activates the Arabidopsis H(+)/Ca(2+) antiporter CAX1 to integrate calcium transport and salt tolerance.

作者信息

Cheng Ning-Hui, Pittman Jon K, Zhu Jian-Kang, Hirschi Kendal D

机构信息

United States Department of Agriculture/Agricultural Research Service Children's Nutrition Research Center, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

J Biol Chem. 2004 Jan 23;279(4):2922-6. doi: 10.1074/jbc.M309084200. Epub 2003 Oct 28.

Abstract

The regulation of ions within cells is an indispensable component of growth and adaptation. The plant SOS2 protein kinase and its associated Ca(2+) sensor, SOS3, have been demonstrated to modulate the plasma membrane H(+)/Na(+) antiporter SOS1; however, how these regulators modulate Ca(2+) levels within cells is poorly understood. Here we demonstrate that SOS2 regulates the vacuolar H(+)/Ca(2+) antiporter CAX1. Using a yeast growth assay, co-expression of SOS2 specifically activated CAX1, whereas SOS3 did not. CAX1-like chimeric transporters were activated by SOS2 if the chimeric proteins contained the N terminus of CAX1. Vacuolar membranes from CAX1-expressing cells were made to be H(+)/Ca(2+)-competent by the addition of SOS2 protein in a dose-dependent manner. Using a yeast two-hybrid assay, SOS2 interacted with the N terminus of CAX1. In each of these yeast assays, the activation of CAX1 by SOS2 was SOS3-independent. In planta, the high level of expression of a deregulated version of CAX1 caused salt sensitivity. These findings suggest multiple functions for SOS2 and provide a mechanistic link between Ca(2+) and Na(+) homeostasis in plants.

摘要

细胞内离子的调节是生长和适应性不可或缺的组成部分。植物SOS2蛋白激酶及其相关的Ca(2+)传感器SOS3已被证明可调节质膜H(+)/Na(+)逆向转运蛋白SOS1;然而,这些调节因子如何调节细胞内的Ca(2+)水平却知之甚少。在这里,我们证明SOS2调节液泡H(+)/Ca(2+)逆向转运蛋白CAX1。通过酵母生长试验,SOS2的共表达特异性激活了CAX1,而SOS3则没有。如果嵌合蛋白包含CAX1的N末端,则CAX1样嵌合转运蛋白被SOS2激活。通过以剂量依赖的方式添加SOS2蛋白,使表达CAX1的细胞的液泡膜具有H(+)/Ca(2+)活性。使用酵母双杂交试验,SOS2与CAX1的N末端相互作用。在这些酵母试验中的每一个中,SOS2对CAX1的激活都不依赖于SOS3。在植物中,CAX1失调版本的高表达导致盐敏感性。这些发现表明SOS2具有多种功能,并为植物中Ca(2+)和Na(+)稳态之间提供了一个机制联系。

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