首页> 外文OA文献 >The Arabidopsis Abiotic Stress-Induced TSPO-Related Protein Reduces Cell-Surface Expression of the Aquaporin PIP2;7 through Protein-Protein Interactions and Autophagic Degradation.
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The Arabidopsis Abiotic Stress-Induced TSPO-Related Protein Reduces Cell-Surface Expression of the Aquaporin PIP2;7 through Protein-Protein Interactions and Autophagic Degradation.

机译:拟南芥非生物胁迫诱导的TSPO相关蛋白通过蛋白-蛋白相互作用和自噬降解降低水通道蛋白PIP2; 7的细胞表面表达。

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摘要

The Arabidopsis thaliana multi-stress regulator TSPO is transiently induced by abiotic stresses. The final destination of this polytopic membrane protein is the Golgi apparatus, where its accumulation is strictly regulated, and TSPO is downregulated through a selective autophagic pathway. TSPO-related proteins regulate the physiology of the cell by generating functional protein complexes. A split-ubiquitin screen for potential TSPO interacting partners uncovered a plasma membrane aquaporin, PIP2;7. Pull-down assays and fluorescence imaging approaches revealed that TSPO physically interacts with PIP2;7 at the endoplasmic reticulum and Golgi membranes in planta. Intriguingly, constitutive expression of fluorescently tagged PIP2;7 in TSPO-overexpressing transgenic lines resulted in patchy distribution of the fluorescence, reminiscent of the pattern of constitutively expressed yellow fluorescent protein-TSPO in Arabidopsis. Mutational stabilization of TSPO or pharmacological inhibition of the autophagic pathway affected concomitantly the detected levels of PIP2;7, suggesting that the complex containing both proteins is degraded through the autophagic pathway. Coexpression of TSPO and PIP2;7 resulted in decreased levels of PIP2;7 in the plasma membrane and abolished the membrane water permeability mediated by transgenic PIP2;7. Taken together, these data support a physiological role for TSPO in regulating the cell-surface expression of PIP2;7 during abiotic stress conditions through protein-protein interaction and demonstrate an aquaporin regulatory mechanism involving TSPO.
机译:非生物胁迫短暂诱导拟南芥多重胁迫调节剂TSPO。该多聚体膜蛋白的最终目的地是高尔基体,在那里其积累受到严格调节,而TSPO通过选择性自噬途径被下调。 TSPO相关蛋白通过生成功能性蛋白复合物来调节细胞的生理。可能的TSPO相互作用伙伴的分裂泛素筛选发现了质膜水通道蛋白PIP2; 7。下拉测定法和荧光成像方法显示,TSPO在植物内质网和高尔基膜上与PIP2; 7发生物理相互作用。有趣的是,在过表达TSPO的转基因株系中荧光标记的PIP2; 7的组成型表达导致荧光的斑片状分布,让人联想到拟南芥中组成型表达的黄色荧光蛋白-TSPO的模式。 TSPO的突变稳定或自噬途径的药理抑制会同时影响检测到的PIP2; 7的水平,这表明含有这两种蛋白质的复合物会通过自噬途径降解。 TSPO和PIP2; 7的共表达导致质膜中PIP2; 7的水平降低,并废除了转基因PIP2; 7介导的膜透水性。两者合计,这些数据支持TSPO在非生物应激条件下通过蛋白-蛋白相互作用调节PIP2; 7在细胞表面表达的生理作用,并证明涉及TSPO的水通道蛋白调节机制。

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