首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A protein kinase-phosphatase pair interacts with an ion channel to regulate ABA signaling in plant guard cells
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A protein kinase-phosphatase pair interacts with an ion channel to regulate ABA signaling in plant guard cells

机译:蛋白激酶磷酸酶对与离子通道相互作用,调节植物保卫细胞中的ABA信号传导

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The plant hormone abscisic acid (ABA) serves as a physiological monitor to assess the water status of plants and, under drought conditions, induces stomatal pore closure by activating specific ion channels, such as a slow-anion channel (SLAC1) that, in turn, mediate ion efflux from the guard cells. Earlier genetic analyses uncovered a protein kinase (OST1) and several 2C-type phospha-tases, as respective positive and negative regulators of ABA-induced stomatal closure. Here we show that the OST1 kinase interacts with the SLAC1 anion channel, leading to its activation via phosphorylation. PP2CA, one of the PP2C phosphatase family members acts in an opposing manner and inhibits the activity of SLAC1 by two mechanisms: (1) direct interaction with SLAC1 itself, and (2) physical interaction with OSTI leading to inhibition of the kinase independently of phosphatase activity. The results suggest that ABA signaling is mediated by a physical interaction chain consisting of several components, including a PP2C member, SnRK2-type kinase (OST1), and an ion channel, SLAC1, to regulate stomatal movements. The findings are in keeping with a paradigm in which a protein kinase-phosphatase pair interacts physically with a target protein to couple a signal with a specific response.
机译:植物激素脱落酸(ABA)用作生理监测器,以评估植物的水分状况,并在干旱条件下通过激活特定的离子通道(例如慢速阴离子通道(SLAC1))来诱导气孔关闭。介导来自保卫细胞的离子流出。早期的遗传分析发现了蛋白激酶(OST1)和几种2C型磷酸酶,它们分别是ABA诱导的气孔关闭的正向和负向调节剂。在这里,我们显示OST1激酶与SLAC1阴离子通道相互作用,从而通过磷酸化激活它。 PP2CA,一种PP2C磷酸酶家族成员,以相反的方式起作用,并通过两种机制抑制SLAC1的活性:(1)与SLAC1本身的直接相互作用,以及(2)与OSTI的物理相互作用,导致独立于磷酸酶的激酶抑制活动。结果表明,ABA信号转导由包含数种成分的物理相互作用链介导,包括PP2C成员SnRK2型激酶(OST1)和离子通道SLAC1,以调节气孔运动。该发现与蛋白质激酶-磷酸酶对与靶蛋白发生物理相互作用以使信号与特定应答偶联的范例保持一致。

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