Redox Proteome Perturbation in Arabidopsis upon Pseudomonas syringae Infection

Pei Liu, Huoming Zhang, L. Xiong, Yiji Xia
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Abstract

Oxidative burst is one of the earliest plant cellular responses triggered by pathogen infection. Reactive oxygen species can cause oxidative modifications of redox-sensitive proteins to mediate the defense responses. Identification and characterization of proteins that undergo oxidative modifications in these processes is an important step toward understanding molecular mechanisms of plant defense responses. In this study, an in vivo 15N metabolic labeling method combined with a cysteine-containing peptide enrichment technique was applied to identify and quantify proteins and their redox states in Arabidopsis in response to infection by Pseudomonas syringae pv tomato DC3000 (Pst). Changes of peptide redox states were compared and corrected with the changes of protein levels. A total of forty peptides representing thirty-six non-redundant proteins showed significantly redox state changes in response to the infection by the virulent Pst strain and the avirulent Pst strain (Pst avrRpm1), of which 23 had previously not been recognized to undergo oxidative PTMs. The differentially expressed redox-sensitive proteins are involved in cell wall organization, primary metabolism, photosynthesis and stress responses. Interestingly, proteins located at extracellular were more susceptible to be regulated on the redox PTMs level. These findings provide a foundation for further investigation into the redox signaling during plant defense responses.
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丁香假单胞菌感染对拟南芥氧化还原蛋白质组的影响
氧化爆发是植物细胞受病原菌感染后最早发生的反应之一。活性氧可以引起氧化还原敏感蛋白的氧化修饰,从而介导防御反应。鉴定和表征在这些过程中经历氧化修饰的蛋白质是了解植物防御反应分子机制的重要一步。本研究采用体内15N代谢标记法结合含半胱氨酸肽富集技术,鉴定和定量拟南芥对丁香假单胞菌pv番茄DC3000 (Pst)感染的蛋白及其氧化还原状态。将肽氧化还原状态的变化与蛋白水平的变化进行比较和校正。共有40个多肽代表36个非冗余蛋白在毒力Pst菌株和无毒Pst菌株(Pst avrRpm1)的感染下表现出明显的氧化还原状态变化,其中23个先前未被识别为发生氧化PTMs。差异表达的氧化还原敏感蛋白参与细胞壁组织、初级代谢、光合作用和胁迫反应。有趣的是,位于细胞外的蛋白质更容易受到氧化还原PTMs水平的调节。这些发现为进一步研究植物防御反应中的氧化还原信号提供了基础。
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