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Identification of Multiple Metabolic Enzymes from Mice Cochleae Tissue Using a Novel Functional Proteomics Technology

机译:使用新型功能蛋白质组学技术从小鼠耳蜗组织中鉴定多种代谢酶

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摘要

A new type of technology in proteomics was developed in order to separate a complex protein mixture and analyze protein functions systematically. The technology combines the ability of two-dimensional gel electrophoresis (2-DE) to separate proteins with a protein elution plate (PEP) to recover active proteins for functional analysis and mass spectrometry (MS)-based identification. In order to demonstrate the feasibility of this functional proteomics approach, NADH and NADPH-dependent oxidases, major redox enzyme families, were identified from mice cochlear tissue after a specific drug treatment. By comparing the enzymatic activity between mice that were treated with a drug and a control group significant changes were observed. Using MS, five NADH-dependent oxidases were identified that showed highly altered enzymatic activities due to the drug treatment. In essence, the PEP technology allows for a systematic analysis of a large enzyme family from a complex proteome, providing insights in understanding the mechanism of drug treatment.
机译:为了分离复杂的蛋白质混合物并系统地分析蛋白质功能,开发了一种新型的蛋白质组学技术。该技术将二维凝胶电泳(2-DE)分离蛋白质的能力与蛋白质洗脱板(PEP)相结合,以回收活性蛋白质,以进行功能分析和基于质谱(MS)的鉴定。为了证明这种功能蛋白质组学方法的可行性,经过特殊药物处理后,从小鼠耳蜗组织中鉴定出主要的氧化还原酶家族是NADH和NADPH依赖的氧化酶。通过比较用药物治疗的小鼠和对照组之间的酶促活性,观察到了显着变化。使用MS,鉴定了五种NADH依赖的氧化酶,这些酶由于药物处理而显示出高度变化的酶活性。本质上,PEP技术可对复杂蛋白质组中的大酶家族进行系统分析,从而为了解药物治疗机理提供见解。

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