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拟南芥中海藻糖-6-磷酸合酶基因家族的差异多位点磷酸化:基于质谱的多平行肽库磷酸化分析方法

Differential multisite phosphorylation of the trehalose-6-phosphate synthase gene family in Arabidopsis thaliana: a mass spectrometry-based process for multiparallel peptide library phosphorylation analysis.

作者信息

Glinski Mirko, Weckwerth Wolfram

机构信息

Max Planck Institute of Molecular Plant Physiology, 14476 Potsdam-Golm, Germany.

出版信息

Mol Cell Proteomics. 2005 Oct;4(10):1614-25. doi: 10.1074/mcp.M500134-MCP200. Epub 2005 Jul 19.

Abstract

Multisite protein phosphorylation plays a fundamental role in metabolic regulation. To detect and quantify in vitro kinase phosphorylation activities, we developed a highly selective LC-MS/MS-based method using high resolution multiple reaction monitoring on a triple quadrupole mass spectrometer. This method eliminates the need for stable isotope labeling and enables multiparallel kinase target assays. Using these assays, we made the first observation of in vitro phosphorylation of different trehalose-6-phosphate synthase (TPS) isozymes. TPSs possess putative Ca2+-independent, sucrose non-fermenting 1-related protein kinase 1 (SnRK1) phosphorylation sites. Sixteen synthetic peptides from six different Arabidopsis thaliana TPS isozymes containing the SnRK1 consensus recognition motif were phosphorylated simultaneously in vitro, and their phosphorylation dynamics were determined. We achieved absolute quantification of TPS peptide phosphorylation by tuning the mass spectrometer to the corresponding synthetic standard phosphopeptides. The selectivity of the mass spectrometer in the multiple reaction monitoring mode compensates for the low ionization efficiency of phosphopeptides in the presence of a complex matrix. Results are in close agreement with recent in vivo studies of TPS phosphorylation and regulation and reveal significant differences in the phosphorylation levels of different TPS members within the TPS gene family ranging over 3 orders of magnitude. Substituting EGTA for CaCl2 in the reaction mixture reduced the formation of some of the phospho-TPS peptides drastically, indicating that Ca2+-dependent kinases are active in the presence of Ca2+-independent SnRKs. This agrees with the proposed overlap of the consensus motifs of these kinases and enables delineation between Ca2+-independent and Ca2+-dependent phosphorylation. Results demonstrate that multiparallel kinase target assays are sensitive enough to provide evidence for differential multisite phosphorylation of homologous TPS proteins and their highly conserved putative phosphorylation sites.

摘要

多位点蛋白质磷酸化在代谢调节中起着基础性作用。为了检测和定量体外激酶磷酸化活性,我们开发了一种基于液相色谱-串联质谱的高选择性方法,该方法在三重四极杆质谱仪上采用高分辨率多反应监测。此方法无需稳定同位素标记,并能实现多平行激酶靶向分析。通过这些分析,我们首次观察到不同海藻糖-6-磷酸合酶(TPS)同工酶的体外磷酸化。TPS具有假定的不依赖Ca2+的、与蔗糖非发酵1相关的蛋白激酶1(SnRK1)磷酸化位点。来自6种不同拟南芥TPS同工酶的16条含有SnRK1共有识别基序的合成肽在体外同时被磷酸化,并测定了它们的磷酸化动力学。我们通过将质谱仪调谐到相应的合成标准磷酸肽实现了TPS肽磷酸化的绝对定量。质谱仪在多反应监测模式下的选择性弥补了复杂基质存在下磷酸肽低电离效率的问题。结果与近期关于TPS磷酸化和调控的体内研究密切一致,并揭示了TPS基因家族中不同TPS成员的磷酸化水平在3个数量级范围内存在显著差异。在反应混合物中用乙二醇双四乙酸(EGTA)替代氯化钙(CaCl2)会大幅减少一些磷酸化TPS肽的形成,表明在不依赖Ca2+的SnRKs存在时,依赖Ca2+的激酶是有活性的。这与这些激酶共有基序的提议重叠相符,并能够区分不依赖Ca2+和依赖Ca2+的磷酸化。结果表明,多平行激酶靶向分析足够灵敏,能够为同源TPS蛋白及其高度保守的假定磷酸化位点的差异多位点磷酸化提供证据。

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