首页> 外文期刊>Molecular & cellular proteomics: MCP >Post-Transcriptional Coordination of the Arabidopsis Iron Deficiency Response is Partially Dependent on the E3 Ligases RING DOMAIN LIGASE1 (RGLG1) and RING DOMAIN LIGASE2 (RGLG2).
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Post-Transcriptional Coordination of the Arabidopsis Iron Deficiency Response is Partially Dependent on the E3 Ligases RING DOMAIN LIGASE1 (RGLG1) and RING DOMAIN LIGASE2 (RGLG2).

机译:拟南芥铁缺乏反应的转录后协调部分取决于E3 Ligas的RING DOMAIN LIGASE1(RGLG1)和RING DOMAIN LIGASE2(RGLG2)。

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Acclimation to changing environmental conditions is mediated by proteins, the abundance of which is carefully tuned by an elaborate interplay of DNA-templated and post-transcriptional processes. To dissect the mechanisms that control and mediate cellular iron homeostasis, we conducted quantitative high-resolution iTRAQ proteomics and microarray-based transcriptomic profiling of iron-deficient Arabidopsis thaliana plants. A total of 13,706 and 12,124 proteins was identified with a quadrupole-Orbitrap hybrid mass spectrometer in roots and leaves, respectively. This deep proteomic coverage allowed accurate estimates of post-transcriptional regulation in response to iron deficiency. Similarly regulated transcripts were detected in only 13% (roots) and 11% (leaves) of the 886 proteins that differentially accumulated between iron-sufficient and iron-deficient plants, indicating that the majority of the iron-responsive proteins was post-transcriptionally regulated. Mutants harboring defects in the RING DOMAIN LIGASE1 (RGLG1)(1) and RING DOMAIN LIGASE2 (RGLG2) showed a pleiotropic phenotype that resembled iron-deficient plants with reduced trichome density and the formation of branched root hairs. Proteomic and transcriptomic profiling of rglg1 rglg2 double mutants revealed that the functional RGLG protein is required for the regulation of a large set of iron-responsive proteins including the coordinated expression of ribosomal proteins. This integrative analysis provides a detailed catalog of post-transcriptionally regulated proteins and allows the concept of a chiefly transcriptionally regulated iron deficiency response to be revisited. Protein data are available via ProteomeXchange with identifier PXD002126.
机译:适应环境条件变化的因素是蛋白质,蛋白质的丰度通过DNA模板化和转录后过程的复杂相互作用而精心调节。为了剖析控制和介导细胞铁稳态的机制,我们对缺铁的拟南芥植物进行了定量的高分辨率iTRAQ蛋白质组学和基于微阵列的转录组分析。用四极-Orbitrap混合质谱仪分别在根和叶中鉴定出总共13,706和12,124个蛋白质。这种深层的蛋白质组学覆盖使得可以准确估计转录后对铁缺乏症的调控。在铁充足和缺铁植物之间差异积累的886种蛋白质中,只有13%(根)和11%(叶)中检测到类似的调控转录本,这表明大多数铁响应蛋白都在转录后受到调控。 。在RING DOMAIN LIGASE1(RGLG1)(1)和RING DOMAIN LIGASE2(RGLG2)中具有缺陷的突变体表现出多效性表型,类似于铁缺乏的植物,其毛线密度降低,并且形成了分支的根毛。 rglg1 rglg2双突变体的蛋白质组学和转录组学分析表明,功能性RGLG蛋白是调节铁反应蛋白(包括核糖体蛋白的协调表达)的必要条件。这种综合分析提供了转录后调节的蛋白质的详细目录,并允许重新审视主要转录调节的铁缺乏反应的概念。蛋白质数据可通过ProteomeXchange获得,其标识符为PXD002126。

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