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Global quantitative SILAC phosphoproteomics reveals differential phosphorylation is widespread between the procyclic and bloodstream form lifecycle stages of Trypanosoma brucei

机译:全球定量SILAC磷酸蛋白质组学显示布鲁氏锥虫的生命周期和生命周期各阶段之间存在差异化的磷酸化

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摘要

We report a global quantitative phosphoproteomic study of bloodstream and procyclic form Trypanosoma brucei using SILAC labeling of each lifecycle stage. Phosphopeptide enrichment by SCX and TiO2 led to the identification of a total of 10096 phosphorylation sites on 2551 protein groups and quantified the ratios of 8275 phosphorylation sites between the two lifecycle stages. More than 9300 of these sites (92%) have not previously been reported. Model-based gene enrichment analysis identified over representation of Gene Ontology terms relating to the flagella, protein kinase activity, and the regulation of gene expression. The quantitative data reveal that differential protein phosphorylation is widespread between bloodstream and procyclic form trypanosomes, with significant intraprotein differential phosphorylation. Despite a lack of dedicated tyrosine kinases, 234 phosphotyrosine residues were identified, and these were 3−4 fold over-represented among site changing >10-fold between the two lifecycle stages. A significant proportion of the T. brucei kinome was phosphorylated, with evidence that MAPK pathways are functional in both lifecycle stages. Regulation of gene expression in T. brucei is exclusively post-transcriptional, and the extensive phosphorylation of RNA binding proteins observed may be relevant to the control of mRNA stability in this organism.
机译:我们报告了使用SILAC标记每个生命周期阶段的血流和前循环形式布鲁氏锥虫的全球定量磷酸化蛋白质组学研究。通过SCX和TiO2富集的磷酸肽导致鉴定了2551个蛋白质组上的10096个磷酸化位点,并量化了两个生命周期阶段中的8275个磷酸化位点的比率。这些站点中有9300多个(92%)以前尚未被报告过。基于模型的基因富集分析确定了与鞭毛,蛋白激酶活性和基因表达调控有关的基因本体论术语的表示形式。定量数据显示差异蛋白磷酸化在血流和前环形式锥虫之间广泛分布,蛋白内差异化磷酸化明显。尽管缺乏专用的酪氨酸激酶,但已鉴定出234个磷酸酪氨酸残基,在两个生命周期阶段中位点变化> 10倍时,这些残基被过量表达了3-4倍。 T. brucei kinome的相当一部分被磷酸化,有证据表明MAPK通路在两个生命周期阶段均起作用。布鲁氏菌中基因表达的调节完全是转录后的,观察到的RNA结合蛋白的广泛磷酸化可能与该生物中mRNA稳定性的控制有关。

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