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首页> 外文期刊>The Plant Cell >Functional analysis of the hydrophilic loop in intracellular trafficking of Arabidopsis PIN-FORMED proteins.
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Functional analysis of the hydrophilic loop in intracellular trafficking of Arabidopsis PIN-FORMED proteins.

机译:拟南芥PIN形成蛋白细胞内运输中亲水环的功能分析。

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摘要

Different PIN-FORMED proteins (PINs) contribute to intercellular and intracellular auxin transport, depending on their distinctive subcellular localizations. Arabidopsis thaliana PINs with a long hydrophilic loop (HL) (PIN1 to PIN4 and PIN7; long PINs) localize predominantly to the plasma membrane (PM), whereas short PINs (PIN5 and PIN8) localize predominantly to internal compartments. However, the subcellular localization of the short PINs has been observed mostly for PINs ectopically expressed in different cell types, and the role of the HL in PIN trafficking remains unclear. Here, we tested whether a long PIN-HL can provide its original molecular cues to a short PIN by transplanting the HL. The transplanted long PIN2-HL was sufficient for phosphorylation and PM trafficking of the chimeric PIN5:PIN2-HL but failed to provide the characteristic polarity of PIN2. Unlike previous observations, PIN5 showed clear PM localization in diverse cell types where PIN5 is natively or ectopically expressed and even polar PM localization in one cell type. Furthermore, in the root epidermis, the subcellular localization of PIN5 switched from PM to internal compartments according to the developmental stage. Our results suggest that the long PIN-HL is partially modular for the trafficking behavior of PINs and that the intracellular trafficking of PIN is plastic depending on cell type and developmental stage.
机译:取决于其独特的亚细胞定位,不同的PIN形成蛋白(PIN)有助于细胞间和细胞内生长素的运输。具有长亲水环(HL)(PIN1至PIN4和PIN7;长PIN)的拟南芥PIN主要位于质膜(PM),而短PIN(PIN5和PIN8)则主要位于内部隔室。但是,短PIN的亚细胞定位主要观察到异位表达在不同细胞类型中的PIN,而HL在PIN运输中的作用仍不清楚。在这里,我们测试了长PIN-HL是否可以通过移植HL向短PIN提供原始分子提示。移植的长PIN2-HL足以进行嵌合PIN5:PIN2-HL的磷酸化和PM转运,但未能提供PIN2的特征极性。与以前的观察结果不同,PIN5在多种细胞类型中表现出明显的PM定位,其中PIN5天然或异位表达,甚至在一种细胞类型中也呈极性PM定位。此外,在根表皮中,PIN5的亚细胞定位根据发育阶段从PM切换到内部区室。我们的结果表明,长PIN-HL对于PIN的运输行为是部分模块化的,并且PIN的细胞内运输是可塑性的,具体取决于细胞类型和发育阶段。

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