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首页> 外文期刊>Frontiers in Microbiology >Sweet and Sour Ehrlichia: Glycoproteomics and Phosphoproteomics Reveal New Players in Ehrlichia ruminantium Physiology and Pathogenesis
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Sweet and Sour Ehrlichia: Glycoproteomics and Phosphoproteomics Reveal New Players in Ehrlichia ruminantium Physiology and Pathogenesis

机译:酸甜的埃希氏菌:糖皮质激素和磷酸蛋白组学揭示了反刍动物埃希氏菌的生理学和发病机理

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摘要

Unraveling which proteins and post-translational modifications (PTMs) affect bacterial pathogenesis and physiology in diverse environments is a tough challenge. Herein, we used mass spectrometry-based assays to study protein phosphorylation and glycosylation in Ehrlichia ruminantium Gardel virulent (ERGvir) and attenuated (ERGatt) variants and, how they can modulate Ehrlichia biological processes. The characterization of the S/T/Y phosphoproteome revealed that both strains share the same set of phosphoproteins ( n = 58), 36% being overexpressed in ERGvir. The percentage of tyrosine phosphorylation is high (23%) and 66% of the identified peptides are multi-phosphorylated. Glycoproteomics revealed a high percentage of glycoproteins (67% in ERGvir) with a subset of glycoproteins being specific to ERGvir ( n = 64/371) and ERGatt ( n = 36/343). These glycoproteins are involved in key biological processes such as protein, amino-acid and purine biosynthesis, translation, virulence, DNA repair, and replication. Label-free quantitative analysis revealed over-expression in 31 proteins in ERGvir and 8 in ERGatt. While further PNGase digestion confidently localized 2 and 5 N -glycoproteins in ERGvir and ERGatt, respectively, western blotting suggests that many glycoproteins are O -GlcNAcylated. Twenty-three proteins were detected in both the phospho- and glycoproteome, for the two variants. This work represents the first comprehensive assessment of PTMs on Ehrlichia biology, rising interesting questions regarding ER–host interactions. Phosphoproteome characterization demonstrates an increased versatility of ER phosphoproteins to participate in different mechanisms. The high number of glycoproteins and the lack of glycosyltransferases-coding genes highlight ER dependence on the host and/or vector cellular machinery for its own protein glycosylation. Moreover, these glycoproteins could be crucial to interact and respond to changes in ER environment. PTMs crosstalk between of O -GlcNAcylation and phosphorylation could be used as a major cellular signaling mechanism in ER. As little is known about the Ehrlichia proteins/proteome and its signaling biology, the results presented herein provide a useful resource for further hypothesis-driven exploration of Ehrlichia protein regulation by phosphorylation and glycosylation events. The mass spectrometry proteomics data have been deposited to the ProteomeXchange Consortium with the data set identifier PXD012589.
机译:弄清哪些蛋白质和翻译后修饰(PTM)在不同环境中会影响细菌的发病机理和生理学是一项艰巨的挑战。在本文中,我们使用了基于质谱的分析方法来研究反刍动物埃里希氏反刍动物Gardel强毒(ERGvir)和减毒(ERGatt)变体中的蛋白质磷酸化和糖基化,以及它们如何调节埃里希氏体的生物学过程。 S / T / Y磷酸化蛋白质组的特征表明,两种菌株共享同一套磷酸化蛋白质(n = 58),其中36%在ERGvir中过表达。酪氨酸磷酸化的百分比很高(23%),并且66%的鉴定出的肽被多磷酸化。糖皮质激素组学显示糖蛋白的百分比很高(ERGvir中为67%),其中一部分糖蛋白对ERGvir(n = 64/371)和ERGatt(n = 36/343)具有特异性。这些糖蛋白参与关键的生物学过程,例如蛋白质,氨基酸和嘌呤的生物合成,翻译,毒力,DNA修复和复制。无标记定量分析显示,ERGvir中有31种蛋白过表达,ERGatt中有8种蛋白过表达。虽然进一步的PNGase消化可以分别在ERGvir和ERGatt中可靠地定位2和5个N-糖蛋白,但蛋白质印迹表明许多糖蛋白被O-GlcNAcy酰化。在这两个变异体的磷酸化和糖化蛋白质组中均检测到23种蛋白质。这项工作代表了对埃希氏菌生物学的PTM的首次全面评估,提出了有关ER与宿主相互作用的有趣问题。磷酸化蛋白质组的表征表明,ER磷酸化蛋白参与多种机制的多功能性增强。大量的糖蛋白和缺乏糖基转移酶编码基因强调了ER对宿主和/或载体细胞机制自身蛋白糖基化的依赖性。此外,这些糖蛋白可能对相互作用和对ER环境的变化起关键作用。 O-GlcNAcy和磷酸化之间的PTM串扰可以用作ER中主要的细胞信号传导机制。关于埃希氏菌蛋白/蛋白质组及其信号传导生物学知之甚少,本文提供的结果为进一步的假设驱动的磷酰化和糖基化事件对埃希氏菌蛋白调控的探索提供了有用的资源。质谱蛋白质组学数据已与数据集标识符PXD012589一起存放到ProteomeXchange联盟。

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