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An Autophosphorylation Site of the Protein Kinase SOS2 Is Important for Salt Tolerance in Arabidopsis

机译:蛋白激酶SOS2的自磷酸化位点对于拟南芥的耐盐性很重要

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摘要

The protein kinase SOS2 (Salt Overly Sensitive 2) is essential for salt-stress signaling and tolerance in Arabidopsis. SOS2 is known to be activated by calcium-SOS3 and by phosphorylation at its activation loop. SOS2 is autophosphorylated in vitro, but the autophosphorylation site and its role in salt tolerance are not known. In this study, we identified an autophosphorylation site in SOS2 and analyzed its role in the responses of Arabidopsis to salt stress. Mass spectrometry analysis showed that Ser 228 of SOS2 is autophosphorylated. When this site was mutated to Ala, the autophosphorylation rate of SOS2 decreased. The substrate phosphorylation by the mutated SOS2 was also less than that by the wild-type SOS2. In contrast, changing Ser228 to Asp to mimic the autophosphorylation enhanced substrate phosphorylation by SOS2. Complementation tests in a sos2 mutant showed that the S228A but not the S228D mutation partially disrupted the function of SOS2 in salt tolerance. We also show that activation loop phosphorylation at Thr168 and autophosphorylation at Ser228 cannot substitute for each other, suggesting that both are required for salt tolerance. Our results indicate that Ser 228 of SOS2 is autophosphorylated and that this autophosphorylation is important for SOS2 function under salt stress.
机译:蛋白激酶SOS2(盐过度敏感2)对于拟南芥中的盐胁迫信号传递和耐受性至关重要。已知SOS2被钙-SOS3激活并且被其激活环处的磷酸化激活。 SOS2在体外是自磷酸化的,但自磷酸化位点及其在耐盐性中的作用尚不清楚。在这项研究中,我们确定了SOS2中的一个自磷酸化位点,并分析了其在拟南芥对盐胁迫的响应中的作用。质谱分析表明,SOS2的Ser 228是自磷酸化的。当该位点突变为Ala时,SOS2的自磷酸化率降低。突变的SOS2的底物磷酸化也小于野生型SOS2的底物磷酸化。相反,将Ser228更改为Asp以模拟自身磷酸化可增强SOS2的底物磷酸化。在sos2突变体中的互补性测试显示,S228A突变但不破坏S228D突变,部分破坏了SOS2的耐盐性。我们还显示,Thr168处的激活环磷酸化和Ser228处的自磷酸化不能相互替代,这表明两者都是耐盐性所必需的。我们的结果表明SOS2的Ser 228是自磷酸化的,并且这种自磷酸化对于盐胁迫下的SOS2功能很重要。

著录项

  • 来源
    《分子植物(英文版)》 |2009年第1期|183-190|共8页
  • 作者

    Hiroaki Fujii; Jian-Kang Zhu;

  • 作者单位

    Department of Botany and Plant Sciences, 2150 Batchelor Hall, University of California, Riverside, CA 92521, USA;

    Department of Botany and Plant Sciences, 2150 Batchelor Hall, University of California, Riverside, CA 92521, USA;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 植物学;
  • 关键词

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