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首页> 外文期刊>The Plant Cell >The Arabidopsis Chaperone J3 Regulates the Plasma Membrane H+-ATPase through Interaction with the PKS5 Kinase
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The Arabidopsis Chaperone J3 Regulates the Plasma Membrane H+-ATPase through Interaction with the PKS5 Kinase

机译:拟南芥伴侣J3通过与PKS5激酶相互作用调节质膜H + -ATPase。

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The plasma membrane H+-ATPase (PM H+-ATPase) plays an important role in the regulation of ion and metabolite transport and is involved in physiological processes that include cell growth, intracellular pH, and stomatal regulation. PM H+-ATPase activity is controlled by many factors, including hormones, calcium, light, and environmental stresses like increased soil salinity. We have previously shown that the Arabidopsis thaliana Salt Overly Sensitive2-Like Protein Kinase5 (PKS5) negatively regulates the PM H+-ATPase. Here, we report that a chaperone, J3 (DnaJ homolog 3; heat shock protein 40-like), activates PM H+-ATPase activity by physically interacting with and repressing PKS5 kinase activity. Plants lacking J3 are hypersensitive to salt at high external pH and exhibit decreased PM H+-ATPase activity. J3 functions upstream of PKS5 as double mutants generated using j3-1 and several pks5 mutant alleles with altered kinase activity have levels of PM H+-ATPase activity and responses to salt at alkaline pH similar to their corresponding pks5 mutant. Taken together, our results demonstrate that regulation of PM H+-ATPase activity by J3 takes place via inactivation of the PKS5 kinase.
机译:质膜H + -ATPase(PM H + -ATPase)在调节离子和代谢产物的运输中起重要作用,并参与生理过程,包括细胞生长,细胞内pH值和气孔调节。 PM H + -ATPase的活性受许多因素控制,包括激素,钙,光和环境压力,例如土壤盐分的增加。我们以前已经表明,拟南芥盐过分敏感的2类蛋白激酶5(PKS5)负调控PM H + -ATPase。在这里,我们报告伴侣,J3(DnaJ同源3;热休克蛋白40样),通过与PKS5激酶活性进行物理相互作用并抑制其活化,从而激活PM H + -ATPase活性。缺少J3的植物在高外部pH值下对盐过敏,并表现出降低的PM H + -ATPase活性。 J3在pKS5上游发挥功能,是使用j3-1生成的双突变体,激酶活性改变的多个pks5突变体等位基因的PM H + -ATPase活性水平以及在碱性pH下对盐的响应与其相应的pks5突变体相似。两者合计,我们的结果表明J3对PM H + -ATPase活性的调节是通过PKS5激酶的失活进行的。

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