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利用多重染色技术研究玉米叶片磷酸化组在应对机械损伤时的变化。

Using multiplex-staining to study changes in the maize leaf phosphoproteome in response to mechanical wounding.

机构信息

Department of Plant Biochemistry, Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Warsaw, Poland.

出版信息

Phytochemistry. 2011 Jul;72(10):1285-92. doi: 10.1016/j.phytochem.2011.01.030. Epub 2011 Feb 19.

Abstract

Mechanical wounding of 2-week-old maize (Zea mays L.) leaves, one of the first steps in both pathogen infection and herbivore attack, stimulates metabolism and activates signal transduction pathways dedicated to defense and recovery. The signaling pathways include reversible protein phosphorylation which can modulate protein activities, and transmit signals within cellular pathways and networks. We have used multiplex-staining of high-resolution 2D gels for protein (Sypro Ruby) and phosphorylation (Pro-Q Diamond) as a strategy for quantifying changes in the stoichiometry of phosphorylation after wounding for 270 protein spots. Rigorous statistical analysis of the time-index data allowed us to accept patterns of change in 125 of the spots as non-random, and these patterns were assigned to five clusters. A reliable identity was assigned to 21 selected proteins, most of which have been previously described as phospho-proteins. The results suggest that analysis of protein spots from high-resolution 2D gels by multiplex-staining for protein plus phosphorylation is a strategy that can be broadly useful for study of how the phospho-proteome responds to abiotic stress.

摘要

对 2 周龄玉米(Zea mays L.)叶片进行机械损伤,这是病原体感染和草食动物攻击的第一步,它会刺激新陈代谢并激活专门用于防御和恢复的信号转导途径。信号转导途径包括可逆的蛋白质磷酸化,它可以调节蛋白质的活性,并在细胞途径和网络内传递信号。我们使用高分辨率 2D 凝胶的多重染色(Sypro Ruby 用于蛋白质,Pro-Q Diamond 用于磷酸化)来定量分析 270 个蛋白质点在受伤后 270 分钟内磷酸化的化学计量变化。对时间指数数据的严格统计分析使我们能够接受 125 个斑点的变化模式是非随机的,并将这些模式分配到五个聚类中。对 21 个选定的蛋白质进行了可靠的鉴定,其中大多数蛋白质以前被描述为磷酸化蛋白。结果表明,通过对蛋白质加磷酸化进行多重染色来分析高分辨率 2D 凝胶中的蛋白质斑点,是一种广泛适用于研究磷酸化蛋白质组如何响应非生物胁迫的策略。

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