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首页> 外文期刊>The Plant Cell >ESCRT-III-Associated Protein ALIX Mediates High-Affinity Phosphate Transporter Trafficking to Maintain Phosphate Homeostasis in Arabidopsis
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ESCRT-III-Associated Protein ALIX Mediates High-Affinity Phosphate Transporter Trafficking to Maintain Phosphate Homeostasis in Arabidopsis

机译:ESCRT-III相关蛋白ALIX介导高亲和力磷酸转运蛋白的运输,以维持拟南芥中的磷酸稳态。

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Prior to the release of their cargoes into the vacuolar lumen, sorting endosomes mature into multivesicular bodies (MVBs) through the action of ENDOSOMAL COMPLEX REQUIRED FOR TRANSPORT (ESCRT) protein complexes. MVB-mediated sorting of high-affinity phosphate transporters (PHT1) to the vacuole limits their plasma membrane levels under phosphate-sufficient conditions, a process that allows plants to maintain phosphate homeostasis. Here, we describe ALIX, a cytosolic protein that associates with MVB by interacting with ESCRT-III subunit SNF7 and mediates PHT1; 1 trafficking to the vacuole in Arabidopsis thaliana. We show that the partial loss-of-function mutant alix-1 displays reduced vacuolar degradation of PHT1; 1. ALIX derivatives containing the alix-1 mutation showed reduced interaction with SNF7, providing a simple molecular explanation for impaired cargo trafficking in alix-1 mutants. In fact, the alix-1 mutation also hampered vacuolar sorting of the brassinosteroid receptor BRI1. We also show that alix-1 displays altered vacuole morphogenesis, implying a new role for ALIX proteins in vacuolar biogenesis, likely acting as part of ESCRT-III complexes. In line with a presumed broad target spectrum, the alix-1 mutation is pleiotropic, leading to reduced plant growth and late flowering, with stronger alix mutations being lethal, indicating that ALIX participates in diverse processes in plants essential for their life.
机译:在将其货物释放到液泡腔之前,通过运输所需的内膜复合物(ESCRT)蛋白复合物的作用将内体成熟为多囊体(MVB)。 MVB介导的高亲和力磷酸盐转运蛋白(PHT1)到液泡的分选在磷酸盐充足的条件下限制了它们的质膜水平,这一过程使植物能够维持磷酸盐体内平衡。在这里,我们描述了ALIX,一种通过与ESCRT-III亚基SNF7相互作用并介导PHT1与MVB缔合的胞质蛋白。 1贩运到拟南芥的液泡中。我们表明,部分功能丧失的突变体alix-1显示减少了PHT1的液泡降解; 1.含有alix-1突变的ALIX衍生物与SNF7的相互作用降低,为alix-1突变体的货物运输受损提供了简单的分子解释。实际上,alix-1突变也阻碍了油菜素类固醇受体BRI1的液泡排序。我们还表明,alix-1显示出改变的液泡形态发生,这暗示了ALIX蛋白在液泡生物发生中的新作用,可能是ESCRT-III复合物的一部分。与假定的广泛目标谱一致,alix-1突变是多效性的,导致植物生长减少和开花延迟,强力的alix突变具有致命性,这表明ALIX参与了对其生命至关重要的植物的各种过程。

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