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PIN Auxin Efflux Carrier Polarity Is Regulated by PINOID Kinase-Mediated Recruitment into GNOM-Independent Trafficking in Arabidopsis

机译:销养蛋白流出载体极性受到小蛋白激酶介导的招募到非独立于GNOM的贩运人口拟南芥的调节

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摘要

The phytohormone auxin plays a major role in embryonic and postembryonic plant development. The temporal and spatial distribution of auxin largely depends on the subcellular polar localization of members of the PIN-FORMED (PIN) auxin efflux carrier family. The Ser/Thr protein kinase PINOID (PID) catalyzes PIN phosphorylation and crucially contributes to the regulation of apical-basal PIN polarity. The GTP exchange factor on ADP-ribosylation factors (ARF-GEF), GNOM preferentially mediates PIN recycling at the basal side of the cell. Interference with GNOM activity leads to dynamic PIN transcytosis between different sides of the cell. Our genetic, pharmacological, and cell biological approaches illustrate that PID and GNOM influence PIN polarity and plant development in an antagonistic manner and that the PID-dependent PIN phosphorylation results in GNOM-independent polar PIN targeting. The data suggest that PID and the protein phosphatase 2A not only regulate the static PIN polarity, but also act antagonistically on the rate of GNOM-dependent polar PIN transcytosis. We propose a model that includes PID-dependent PIN phosphorylation at the plasma membrane and the subsequent sorting of PIN proteins to a GNOM-independent pathway for polarity alterations during developmental processes, such as lateral root formation and leaf vasculature development.
机译:植物激素毒素在胚胎和后后植物开发中起着重要作用。植物素的时间和空间分布在很大程度上取决于销形成的销形成(PIN)恒毛型流出载体家族的亚细胞极性定位。 SER / THR蛋白激酶小肽(PID)催化引脚磷酸化并关键有助于对顶部基底销极性的调节。在ADP-核糖基化因子(ARF-GEF)上的GTP交换因子,GNOM优先介导在细胞基底侧的销回收。干扰与GNOM活性导致细胞不同侧之间的动态销转基因刺激。我们的遗传学,药理学和细胞生物方法说明了PID和GNOM以拮抗方式影响PIN极性和植物发育,并且PID依赖性引脚磷酸化导致GNOM独立的极性引脚靶向。数据表明PID和蛋白质磷酸酶2a不仅调节静态引脚极性,而且还针对依赖于Gnom依赖性靶销转胞增性的速率来作用。我们提出了一种模型,其包括在血浆膜上的PID依赖性弓磷酸化以及随后的销蛋白分选到无惯性途径,以在发育过程中的极性改变,例如横向根部形成和叶血管系统开发。

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