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PID/WAG-mediated phosphorylation of the Arabidopsis PIN3 auxin transporter mediates polarity switches during gravitropism

机译:PID /摇摆介导的拟南芥PIN3 AUXIN转运蛋白在船舶中介导极性开关的磷酸化

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Intercellular distribution of the plant hormone auxin largely depends on the polar subcellular distribution of the plasma membrane PIN-FORMED (PIN) auxin transporters. PIN polarity switches in response to different developmental and environmental signals have been shown to redirect auxin fluxes mediating certain developmental responses. PIN phosphorylation at different sites and by different kinases is crucial for PIN function. Here we investigate the role of PIN phosphorylation during gravitropic response. Loss- and gain-of-function mutants in PINOID and related kinases but not in D6PK kinase as well as mutations mimicking constitutive dephosphorylated or phosphorylated status of two clusters of predicted phosphorylation sites partially disrupted PIN3 phosphorylation and caused defects in gravitropic bending in roots and hypocotyls. In particular, they impacted PIN3 polarity rearrangements in response to gravity and during feed-back regulation by auxin itself. Thus PIN phosphorylation, besides regulating transport activity and apical-basal targeting, is also important for the rapid polarity switches in response to environmental and endogenous signals.
机译:植物激素植物蛋白的细胞间分布主要取决于血浆膜销形成(引脚)砧蛋白转运蛋白的极性亚细胞分布。销极性开关响应于不同的发育和环境信号已经显示为重定向调解某些发育响应的生长素助核。不同位点和不同激酶的PIN磷酸化对于PIN功能至关重要。在这里,我们探讨引脚磷酸化在重力响应过程中的作用。小肽和相关激酶中的丧失和功能性突变体,但不含D6PK激酶以及模拟的突变术语脱磷或两种预测磷酸化位点的磷酸化状态部分破碎的PIN3磷酸化,并在根和幼杆子中引起墓穴弯曲的缺陷。特别地,它们响应于重力和助长的馈送调节而撞击PIN3极性重排。因此,除了调节运输活性和顶端基础靶向外,PIN磷酸化对于响应于环境和内源信号的快速极性开关也很重要。

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