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The Global Phosphoproteome of Chlamydomonas reinhardtii Reveals Complex Organellar Phosphorylation in the Flagella and Thylakoid Membrane

机译:莱茵衣藻的全球磷酸化蛋白质组揭示鞭毛和类囊体膜中复杂的细胞器磷酸化。

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摘要

Chlamydomonas reinhardtii is the most intensively-studied and well-developed model for investigation of a wide-range of microalgal processes ranging from basic development through understanding triacylglycerol production. Although proteomic technologies permit interrogation of these processes at the protein level and efforts to date indicate phosphorylation-based regulation of proteins in C. reinhardtii is essential for its underlying biology, characterization of the C. reinhardtii phosphoproteome has been limited. Herein, we report the richest exploration of the C. reinhardtii proteome to date. Complementary enrichment strategies were used to detect 4588 phosphoproteins distributed among every cellular component in C. reinhardtii. Additionally, we report 18,160 unique phosphopeptides at <1% false discovery rate, which comprise 15,862 unique phosphosites - 98% of which are novel. Given that an estimated 30% of proteins in a eukaryotic cell are subject to phosphorylation, we report the majority of the phosphoproteome (23%) of C. reinhardtii. Proteins in key biological pathways were phosphorylated, including photosynthesis, pigment production, carbon assimilation, glycolysis, and protein and carbohydrate metabolism, and it is noteworthy that hyperphosphorylation was observed in flagellar proteins. This rich data set is available via ProteomeXchange (ID: PXD000783) and will significantly enhance understanding of a range of regulatory mechanisms controlling a variety of cellular process and will serve as a critical resource for the microalgal community.
机译:Reinhardtii衣藻是研究最广泛的模型,也是研究最广泛的微藻类过程的模型,从基本的发育到对三酰甘油生产的了解。尽管蛋白质组学技术允许在蛋白质水平上查询这些过程,并且迄今为止的努力表明,莱茵衣藻中蛋白质的基于磷酸化的调控对于其基础生物学是必不可少的,但是莱茵衣藻磷酸化蛋白质组的表征受到限制。在此,我们报道了迄今为止对莱茵衣藻蛋白质组的最丰富的探索。互补富集策略用于检测分布在莱茵衣藻中每个细胞成分之间的4588个磷蛋白。此外,我们报告了18,160个独特的磷酸肽,错误发现率低于1%,其中包括15,862个独特的磷酸位-其中98%是新颖的。鉴于真核细胞中估计有30%的蛋白质会发生磷酸化作用,因此我们报道了莱茵衣藻的大部分磷酸化蛋白质组(23%)。关键生物途径中的蛋白质被磷酸化,包括光合作用,色素生成,碳同化,糖酵解以及蛋白质和碳水化合物的代谢,值得注意的是在鞭毛蛋白质中观察到了过度磷酸化。可通过ProteomeXchange(ID:PXD000783)获得此丰富的数据集,它将大大增强对控制各种细胞过程的各种调节机制的了解,并将成为微藻群落的重要资源。

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