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Quantitative Proteomics Reveals a Dynamic Association of Proteins to Detergent-resistant Membranes upon Elicitor Signaling in Tobacco

机译:定量蛋白质组学揭示了蛋白质在烟草中激发信号后与洗涤剂抗性膜的动态关联。

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摘要

A large body of evidence from the past decade supports the existence, in membrane from animal and yeast cells, of functional microdomains playing important roles in protein sorting, signal transduction, or infection by pathogens. In plants, as previously observed for animal microdomains, detergent-resistant fractions, enriched in sphingolipids and sterols, were isolated from plasma membrane. A characterization of their proteic content revealed their enrichment in proteins involved in signaling and response to biotic and abiotic stress and cell trafficking suggesting that these domains were likely to be involved in such physiological processes. In the present study, we used 14N/15N metabolic labeling to compare, using a global quantitative proteomics approach, the content of tobacco detergent-resistant membranes extracted from cells treated or not with cryptogein, an elicitor of defense reaction. To analyze the data, we developed a software allowing an automatic quantification of the proteins identified. The results obtained indicate that, although the association to detergent-resistant membranes of most proteins remained unchanged upon cryptogein treatment, five proteins had their relative abundance modified. Four proteins related to cell trafficking (four dynamins) were less abundant in the detergent-resistant membrane fraction after cryptogein treatment, whereas one signaling protein (a 14-3-3 protein) was enriched. This analysis indicates that plant microdomains could, like their animal counterpart, play a role in the early signaling process underlying the setup of defense reaction. Furthermore proteins identified as differentially associated to tobacco detergent-resistant membranes after cryptogein challenge are involved in signaling and vesicular trafficking as already observed in similar studies performed in animal cells upon biological stimuli. This suggests that the ways by which the dynamic association of proteins to microdomains could participate in the regulation of the signaling process may be conserved between plant and animals.
机译:过去十年的大量证据支持动物和酵母细胞膜中存在功能性微区,这些功能性微区在蛋白质分选,信号转导或病原体感染中起着重要作用。在植物中,如先前在动物微区中观察到的那样,从质膜中分离了富含鞘脂和固醇的耐洗涤剂成分。对它们的蛋白质含量的表征表明,它们富含蛋白质,这些蛋白质参与了对生物和非生物胁迫以及细胞运输的信号传导和响应,表明这些结构域可能参与了此类生理过程。在本研究中,我们使用了 14 N / 15 N代谢标记,通过整体定量蛋白质组学方法比较了从处理过的细胞中提取的耐烟草去污剂膜的含量是否使用cryptogein,它是防御反应的引发剂。为了分析数据,我们开发了一种软件,可以对鉴定出的蛋白质进行自动定量。获得的结果表明,尽管大多数蛋白质与隐抗蛋白处理后与去污剂抗性膜的结合保持不变,但五种蛋白质的相对丰度得到了修饰。隐壁蛋白处理后,在去污剂抗性膜部分中与细胞运输有关的四种蛋白质(四种动力蛋白)含量较低,而一种信号蛋白(一种14-3-3蛋白)富集。该分析表明,植物微区可能像它们的动物对应区一样,在防御反应建立的早期信号传导过程中发挥作用。此外,如在对动物细胞进行生物刺激后进行的类似研究中已经观察到的那样,隐血球蛋白激发后被鉴定为与烟草清洁剂抗性膜差异相关的蛋白质也参与信号传导和囊泡运输。这表明在植物和动物之间可以保守蛋白质与微区的动态缔合参与信号转导过程调控的方式。

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