首页> 外文期刊>The Plant Cell >Identification of downstream components of ubiquitin-conjugating enzyme PHOSPHATE2 by quantitative membrane proteomics in Arabidopsis roots.
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Identification of downstream components of ubiquitin-conjugating enzyme PHOSPHATE2 by quantitative membrane proteomics in Arabidopsis roots.

机译:通过定量拟南芥根中的膜蛋白质组学鉴定泛素结合酶PHOSPHATE2的下游成分。

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MicroRNA399-mediated regulation of the ubiquitin-conjugating enzyme UBC24/PHOSPHATE2 (PHO2) is crucial for Pi acquisition and translocation in plants. Because of a potential role for PHO2 in protein degradation and its association with membranes, an iTRAQ (for isobaric tags for relative and absolute quantitation)-based quantitative membrane proteomic method was employed to search for components downstream of PHO2. A total of 7491 proteins were identified from Arabidopsis thaliana roots by mass spectrometry, 35.2% of which were predicted to contain at least one transmembrane helix. Among the quantifiable proteins, five were significantly differentially expressed between the wild type and pho2 mutant under two growth conditions. Using immunoblot analysis, we validated the upregulation of several members in PHOSPHATE TRANSPORTER1 (PHT1) family and PHOSPHATE TRANSPORTER TRAFFIC FACILITATOR1 (PHF1) in pho2 and demonstrated that PHO2 mediates the degradation of PHT1 proteins. Genetic evidence that loss of PHF1 or PHT1;1 alleviated Pi toxicity in pho2 further suggests that they play roles as downstream components of PHO2. Moreover, we showed that PHO2 interacts with PHT1s in the postendoplasmic reticulum compartments and mediates the ubiquitination of endomembrane-localized PHT1;1. This study not only uncovers a mechanism by which PHO2 modulates Pi acquisition by regulating the abundance of PHT1s in the secretory pathway destined for plasma membranes, but also provides a database of the membrane proteome that will be widely applicable in root biology research.
机译:MicroRNA399介导的泛素结合酶UBC24 / PHOSPHATE2(PHO2)的调节对于植物中Pi的获取和转运至关重要。由于PHO2在蛋白质降解及其与膜的关联中具有潜在的作用,因此采用了基于iTRAQ(用于相对定量和绝对定量的等压标记)的定量膜蛋白质组学方法来搜索PHO2下游的成分。通过质谱从拟南芥根中鉴定出总共7491种蛋白质,其中35.2%被预测含有至少一个跨膜螺旋。在可定量的蛋白质中,在两种生长条件下,野生型和pho2突变体之间有五个差异显着表达。使用免疫印迹分析,我们验证了pho2中的磷酸盐转运蛋白1(PHT1)家族和磷酸盐转运蛋白1(PHF1)中几个成员的上调,并证明PHO2介导了PHT1蛋白的降解。遗传证据表明,失去PHF1或PHT1; 1减轻了pho2中的Pi毒性,进一步表明它们充当PHO2的下游成分。此外,我们表明,PHO2与内质网后隔室中的PHT1s相互作用并介导内膜定位的PHT1; 1的泛素化。这项研究不仅揭示了PHO2通过调节去往质膜的分泌途径中PHT1s的丰度来调节Pi摄取的机制,而且还提供了将广泛应用于根生物学研究的膜蛋白质组数据库。

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