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Mass Spectrometric Analyses Reveal a Central Role for Ubiquitylation in Remodeling the Arabidopsis Proteome during Photomorphogenesis

机译:质谱分析揭示了泛素化在光形态发生过程中重塑拟南芥蛋白质组中的核心作用。

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摘要

The switch from skotomorphogenesis to photomorphogenesis is a key developmental transition in the life of seed plants. While much of the underpinning proteome remodeling is driven by light-induced changes in gene expression, the proteolytic removal of specific proteins by the ubiquitin-26S proteasome system is also likely paramount. Through mass spectrometric analysis of ubiquitylated proteins affinity-purified from etiolated Arabidopsis seedlings before and after red-light irradiation, we identified a number of influential proteins whose ubiquitylation status is modified during this switch. We observed a substantial enrichment for proteins involved in auxin, abscisic acid, ethylene, and brassinosteroid signaling, peroxisome function, disease resistance, protein phosphorylation and light perception, including the phytochrome (Phy) A and phototropin photoreceptors. Soon after red-light treatment, PhyA becomes the dominant ubiquitylated species, with ubiquitin attachment sites mapped to six lysines. A PhyA mutant protected from ubiquitin addition at these sites is substantially more stable in planta upon photoconversion to Pfr and is hyperactive in driving photomorphogenesis. However, light still stimulates ubiquitylation and degradation of this mutant, implying that other attachment sites and/or proteolytic pathways exist. Collectively, we expand the catalog of ubiquitylation targets in Arabidopsis and show that this post-translational modification is central to the rewiring of plants for photoautotrophic growth.
机译:从植物形态发生到光形态发生的转变是种子植物生命中的关键发展过渡。尽管许多基础蛋白质组重塑是由光诱导的基因表达变化驱动的,但泛素-26S蛋白酶体系统通过蛋白水解去除特定蛋白质也很重要。通过质谱分析红光照射前后从黄化拟南芥幼苗中亲和纯化的泛素化蛋白,我们发现了许多有影响的蛋白,其泛素化状态在此切换过程中被修饰。我们观察到大量的生长素,脱落酸,乙烯和油菜素类固醇信号,过氧化物酶体功能,抗病性,蛋白质磷酸化和光感知,包括植物色素(Phy)A和光养蛋白光感受器所涉及的蛋白质丰富。经过红光处理后,PhyA很快成为占主导地位的泛素化物种,其泛素附着位点定位于六个赖氨酸。在这些位点被保护免于泛素添加的PhyA突变体在光转化为Pfr后在植物中基本上更稳定,并且在驱动光形态发生中活跃。然而,光仍然刺激该突变体的泛素化和降解,暗示存在其他附着位点和/或蛋白水解途径。总的来说,我们扩大了拟南芥中泛素化靶标的目录,并表明这种翻译后修饰对于光养养植物的重新布线至关重要。

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