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PHOSPHATE TRANSPORTER TRAFFIC FACILITATOR1 Is a Plant-Specific SEC12-Related Protein That Enables the Endoplasmic Reticulum Exit of a High-Affinity Phosphate Transporter in Arabidopsis

机译:磷酸转运蛋白交通运输工具1是一种植物特定的SEC12相关蛋白能够使拟南芥中高亲和力磷酸转运蛋白的内质网退出。

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摘要

PHOSPHATE TRANSPORTER1 (PHT1) genes encode phosphate (Pi) transporters that play a fundamental role in Pi acquisition and remobilization in plants. Mutation of the Arabidopsis thaliana PHOSPHATE TRANSPORTER TRAFFIC FACILITATOR1 (PHF1) impairs Pi transport, resulting in the constitutive expression of many Pi starvation–induced genes, increased arsenate resistance, and reduced Pi accumulation. PHF1 expression was detected in all tissues, particularly in roots, flowers, and senescing leaves, and was induced by Pi starvation, thus mimicking the expression patterns of the whole PHT1 gene family. PHF1 was localized in endoplasmic reticulum (ER), and mutation of PHF1 resulted in ER retention and reduced accumulation of the plasma membrane PHT1;1 transporter. By contrast, the PIP2A plasma membrane protein was not mislocalized, and the secretion of Pi starvation–induced RNases was not affected in the mutant. PHF1 encodes a plant-specific protein structurally related to the SEC12 proteins of the early secretory pathway. However, PHF1 lacks most of the conserved residues in SEC12 proteins essential as guanine nucleotide exchange factors. Although it functions in early secretory trafficking, PHF1 likely evolved a novel mechanism accompanying functional specialization on Pi transporters. The identification of PHF1 reveals that plants are also endowed with accessory proteins specific for selected plasma membrane proteins, allowing their exit from the ER, and that these ER exit cofactors may have a phylum-specific origin.
机译:磷酸盐转运蛋白(PHT1)基因编码磷酸盐(Pi)转运蛋白,在植物中Pi的获得和迁移中起着基本作用。拟南芥磷酸转运蛋白运输工具1(PHF1)的突变削弱了Pi的运输,导致许多Pi饥饿诱导基因的组成型表达,砷酸盐抗性增强和Pi积累减少。在所有组织中,尤其是在根,花和衰老的叶子中都检测到PHF1表达,并且被Pi饥饿诱导,从而模仿了整个PHT1基因家族的表达模式。 PHF1位于内质网(ER)中,并且PHF1的突变导致ER保留并减少了质膜PHT1; 1转运蛋白的积累。相比之下,PIP2A质膜蛋白没有错误定位,并且在突变体中不影响Pi饥饿诱导的RNase的分泌。 PHF1编码一种植物特异性蛋白质,其结构与早期分泌途径的SEC12蛋白有关。但是,PHF1缺少作为鸟嘌呤核苷酸交换因子必不可少的SEC12蛋白中的大多数保守残基。虽然PHF1在早期分泌物运输中起作用,但它可能伴随着Pi转运蛋白的功能专业化发展了一种新颖的机制。对PHF1的鉴定表明,植物还具有对所选质膜蛋白特异的辅助蛋白,允许它们从ER退出,并且这些ER退出辅因子可能具有门特异性。

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