Ishitani M, Liu J, Halfter U, Kim C S, Shi W, Zhu J K
Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721, USA.
Plant Cell. 2000 Sep;12(9):1667-78. doi: 10.1105/tpc.12.9.1667.
The salt tolerance gene SOS3 (for salt overly sensitive3) of Arabidopsis is predicted to encode a calcium binding protein with an N-myristoylation signature sequence. Here, we examine the myristoylation and calcium binding properties of SOS3 and their functional significance in plant tolerance to salt. Treatment of young Arabidopsis seedlings with the myristoylation inhibitor 2-hydroxymyristic acid caused the swelling of root tips, mimicking the phenotype of the salt-hypersensitive mutant sos3-1. In vitro translation assays with reticulocyte showed that the SOS3 protein was myristoylated. Targeted mutagenesis of the N-terminal glycine-2 to alanine prevented the myristoylation of SOS3. The functional significance of SOS3 myristoylation was examined by expressing the wild-type myristoylated SOS3 and the mutated nonmyristoylated SOS3 in the sos3-1 mutant. Expression of the myristoylated but not the nonmyristoylated SOS3 complemented the salt-hypersensitive phenotype of sos3-1 plants. No significant difference in membrane association was observed between the myristoylated and nonmyristoylated SOS3. Gel mobility shift and (45)Ca(2)+ overlay assays demonstrated that SOS3 is a unique calcium binding protein and that the sos3-1 mutation substantially reduced the capacity of SOS3 to bind calcium. The resulting mutant SOS3 protein was not able to interact with the SOS2 protein kinase and was less capable of activating it. Together, these results strongly suggest that both N-myristoylation and calcium binding are required for SOS3 function in plant salt tolerance.
拟南芥的耐盐基因SOS3(盐超敏感3)预计编码一种具有N-肉豆蔻酰化特征序列的钙结合蛋白。在此,我们研究了SOS3的肉豆蔻酰化和钙结合特性及其在植物耐盐性中的功能意义。用肉豆蔻酰化抑制剂2-羟基肉豆蔻酸处理拟南芥幼苗,导致根尖肿胀,类似于盐超敏感突变体sos3-1的表型。用网织红细胞进行的体外翻译试验表明,SOS3蛋白发生了肉豆蔻酰化。将N端甘氨酸-2定点突变为丙氨酸可阻止SOS3的肉豆蔻酰化。通过在sos3-1突变体中表达野生型肉豆蔻酰化的SOS3和突变的非肉豆蔻酰化的SOS3,研究了SOS3肉豆蔻酰化的功能意义。肉豆蔻酰化而非非肉豆蔻酰化的SOS3的表达补充了sos3-1植物的盐超敏感表型。在肉豆蔻酰化和非肉豆蔻酰化的SOS3之间未观察到膜结合的显著差异。凝胶迁移率变动分析和(45)Ca(2)+覆盖分析表明,SOS3是一种独特的钙结合蛋白,sos3-1突变显著降低了SOS3结合钙的能力。产生的突变体SOS3蛋白不能与SOS2蛋白激酶相互作用,激活它的能力也较弱。总之,这些结果强烈表明,N-肉豆蔻酰化和钙结合都是SOS3在植物耐盐性中发挥功能所必需的。