首页> 外文期刊>Molecular & cellular proteomics: MCP >Stable isotope metabolic labeling-Based quantitative phosphoproteomic analysis of arabidopsis mutants reveals ethyleneregulated time-Dependent phosphoproteins and putative substrates of constitutive triple response 1 kinase
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Stable isotope metabolic labeling-Based quantitative phosphoproteomic analysis of arabidopsis mutants reveals ethyleneregulated time-Dependent phosphoproteins and putative substrates of constitutive triple response 1 kinase

机译:基于稳定同位素代谢标记的拟南芥突变体的定量磷酸化蛋白质组学分析揭示了乙烯调节的时变磷蛋白和组成性三联反应1激酶的假定底物

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摘要

Ethylene is an important plant hormone that regulates numerous cellular processes and stress responses. The mode of action of ethylene is both dose- and time-dependent. Protein phosphorylation plays a key role in ethylene signaling, which is mediated by the activities of ethylene receptors, constitutive triple response 1 (CTR1) kinase, and phosphatase. To address how ethylene alters the cellular protein phosphorylation profile in a time-dependent manner, differential and quantitative phosphoproteomics based on 15N stable isotope labeling in Arabidopsis was performed on both one-minute ethylene-treated Arabidopsis ethylene-overly-sensitive loss-of-function mutant rcn1-1, deficient in PP2A phosphatase activity, and a pair of long-term ethylene-treated wild-type and loss-of-function ethylene signaling ctr1-1 mutants, deficient in mitogen-activated kinase kinase kinase activity. In total, 1079 phosphopeptides were identified, among which 44 were novel. Several one-minute ethylene-regulated phosphoproteins were found from the rcn1-1. Bioinformatic analysis of the rcn1-1 phosphoproteome predicted nine phosphoproteins as the putative substrates for PP2A phosphatase. In addition, from CTR1 kinase-enhanced phosphosites, we also found putative CTR1 kinase substrates including plastid transcriptionally active protein and calcium-sensing receptor. These regulatory proteins are phosphorylated in the presence of ethylene. Analysis of ethyleneregulated phosphosites using the group-based prediction system with a protein-protein interaction filter revealed a total of 14 kinase-substrate relationships that may function in both CTR1 kinase- and PP2A phosphatase-mediated phosphor-relay pathways. Finally, several ethyleneregulated post-translational modification network models have been built using molecular systems biology tools. It is proposed that ethylene regulates the phosphorylation of arginine/serine-rich splicing factor 41, plasma membrane intrinsic protein 2A, light harvesting chlorophyll A/B binding protein 1.1, and flowering bHLH 3 proteins in a dual-and-opposing fashion.
机译:乙烯是一种重要的植物激素,可调节许多细胞过程和应激反应。乙烯的作用方式与剂量和时间有关。蛋白质磷酸化在乙烯信号传导中起关键作用,乙烯信号传导由乙烯受体,组成型三重应答1(CTR1)激酶和磷酸酶的活性介导。为了解决乙烯如何以时间依赖的方式改变细胞蛋白质磷酸化谱的方法,在乙烯处理过的一分钟拟南芥中,对一分钟的乙烯处理的拟南芥进行了基于15N稳定同位素标记的差异和定量磷酸化蛋白质组学突变体rcn1-1,缺乏PP2A磷酸酶活性,和一对长期经乙烯处理的野生型和功能丧失的乙烯信号转导ctr1-1突变体,缺乏促分裂原活化的激酶激酶活性。总共鉴定出1079个磷酸肽,其中44个是新颖的。从rcn1-1中发现了一些乙烯调节的一分钟磷蛋白。 rcn1-1磷酸化蛋白质组的生物信息学分析预测九种磷酸化蛋白是PP2A磷酸酶的假定底物。此外,从CTR1激酶增强的磷酸位点,我们还发现了推定的CTR1激酶底物,包括质体转录活性蛋白和钙敏感受体。这些调节蛋白在乙烯存在下被磷酸化。使用带有蛋白质-蛋白质相互作用过滤器的基于组的预测系统对乙烯调节的磷酸酯位点进行分析,发现共有14种激酶-底物关系可能在CTR1激酶和PP2A磷酸酶介导的磷光体中继途径中起作用。最后,已经使用分子系统生物学工具建立了几种乙烯调节的翻译后修饰网络模型。提出乙烯以双重和相反的方式调节精氨酸/富含丝氨酸的剪接因子41,质膜固有蛋白2A,光收集叶绿素A / B结合蛋白1.1和开花bHLH 3蛋白的磷酸化。

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