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一种用于在粗酶提取物中定量测定蛋白酶及其底物特异性和 pH 最佳值的技术。

A quantitative technique for determining proteases and their substrate specificities and pH optima in crude enzyme extracts.

机构信息

Crop and Seed Science Department, Agricultural Institute of Slovenia, SI-1000 Ljubljana, Slovenia.

出版信息

Anal Biochem. 2009 May 1;388(1):56-62. doi: 10.1016/j.ab.2009.01.045. Epub 2009 Feb 8.

Abstract

A zymography technique based on native polyacrylamide gel electrophoresis (PAGE) has been devised, which enables the substrate specificities, content and pH profiles of proteolytic enzymes to be determined in an unfractionated tissue extract. Enzymes were visualized by exogenous application of small molecule substrates that fluoresce when hydrolyzed. The linearity of response, treatment of background fluorescence, and effects of diffusion of substrate and enzyme were taken into account. Based on these studies, successive application of different substrates on the same gel has enabled the presence and specificity of individual enzymes to be determined. Differences in the concentrations and profiles of enzymes, resulting from environmental factors or ontogeny of the organism, can be assessed from crude extracts on a single gel. The technique was applied to aminopeptidases and peptidases in crude Phaseolus vulgaris leaf extracts. One enzyme active against Ala-AMC (7-amino-4-methylcoumarin), one enzyme active against Z-Arg-AMC, several enzymes active against Leu-AMC, and (for the first time in plants) several enzymes active against Phe-AMC were identified. The technique is very sensitive, and microgram quantities of total protein led to picomoles of liberated AMC, with a linear response over a 32-fold range of concentration. The experimental procedure, including electrophoresis, is rapid, taking approximately 1 h.

摘要

我们设计了一种基于天然聚丙烯酰胺凝胶电泳(PAGE)的酶谱技术,可用于在未分级的组织提取物中测定蛋白水解酶的底物特异性、含量和 pH 谱。通过外源性应用小分子底物来可视化酶,这些底物在水解时会发出荧光。我们考虑了响应的线性、背景荧光的处理以及底物和酶扩散的影响。基于这些研究,在同一块凝胶上连续应用不同的底物,可以确定单个酶的存在和特异性。可以从单个凝胶上的粗提物评估由于环境因素或生物体的个体发育而导致的酶浓度和谱的差异。该技术应用于粗制菜豆叶片提取物中的氨肽酶和肽酶。鉴定到一种对 Ala-AMC(7-氨基-4-甲基香豆素)有活性的酶、一种对 Z-Arg-AMC 有活性的酶、几种对 Leu-AMC 有活性的酶,以及(首次在植物中)几种对 Phe-AMC 有活性的酶。该技术非常灵敏,微克级别的总蛋白可导致皮摩尔级别的 AMC 释放,浓度范围在 32 倍内具有线性响应。实验过程包括电泳,快速,大约需要 1 小时。

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