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首页> 外文期刊>Plant Molecular Biology >Different phosphorylation mechanisms are involved in the activation of sucrose non-fermenting 1 related protein kinases 2 by osmotic stresses and abscisic acid
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Different phosphorylation mechanisms are involved in the activation of sucrose non-fermenting 1 related protein kinases 2 by osmotic stresses and abscisic acid

机译:不同的磷酸化机制参与渗透胁迫和脱落酸对蔗糖非发酵1相关蛋白激酶2的激活

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摘要

In Arabidopsis cell suspension, hyperosmotic stresses (mannitol and NaCl) were previously shown to activate nine sucrose non-fermenting 1 related protein kinases 2 (SnRK2s) whereas only five of them were also activated by abscisic acid (ABA) treatment. Here, the possible activation by phosphorylation/dephosphorylation of each kinase was investigated by studying their phosphorylation state after osmotic stress, using the Pro-Q Diamond, a specific dye for phosphoproteins. All the activated kinases were phosphorylated after osmotic stress but the induced phosphorylation changes were clearly different depending on the kinase. In addition, the increase of the global phosphorylation level induced by ABA application was lower, suggesting that different mechanisms may be involved in SnRK2 activation by hyperosmolarity and ABA. On the other hand, SnRK2 kinases remain activated by hyperosmotic stress in ABA-deficient and ABA-insensitive mutants, indicating that SnRK2 osmotic activation is independent of ABA. Moreover, using a mutant form of SnRK2s, a specific serine in the activation loop was shown to be phosphorylated after stress treatments and essential for activity and/or activation. Finally, SnRK2 activity was sensitive to staurosporine, whereas SnRK2 activation by hyperosmolarity or ABA was not, indicating that SnRK2 activation by phosphorylation is mediated by an upstream staurosporine-insensitive kinase, in both signalling pathways. All together, these results indicate that different phosphorylation mechanisms and at least three signalling pathways are involved in the activation of SnRK2 proteins in response to osmotic stress and ABA.
机译:在拟南芥细胞悬浮液中,高渗胁迫(甘露醇和NaCl)以前被证明可以激活9种蔗糖非发酵1相关蛋白激酶2(SnRK2s),而其中只有5种也被脱落酸(ABA)激活。在这里,通过使用磷蛋白的特殊染料Pro-Q Diamond研究渗透压后它们的磷酸化状态,研究了每种激酶通过磷酸化/去磷酸化的可能活化。渗透压后,所有活化的激酶都被磷酸化,但是诱导的磷酸化变化明显取决于激酶。此外,ABA诱导的整体磷酸化水平的增加较低,表明高渗和ABA可能参与了SnRK2激活的不同机制。另一方面,SnRK2激酶在ABA缺乏和ABA不敏感的突变体中仍被高渗胁迫激活,这表明SnRK2渗透激活与ABA无关。而且,使用突变形式的SnRK2s,激活环中的特定丝氨酸在应激处理后显示为磷酸化,是活性和/或激活所必需的。最后,SnRK2活性对星形孢菌素敏感,而高渗透压或ABA对SnRK2的激活不敏感,这表明在两个信号通路中,磷酸化SnRK2的激活是由上游对星形孢菌素不敏感的激酶介导的。总之,这些结果表明响应于渗透压和ABA,SnRK2蛋白的活化涉及不同的磷酸化机制和至少三个信号通路。

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