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使用明胶或偶氮明胶的简化内蛋白酶测定法。

Simplified endoproteinase assays using gelatin or azogelatin.

作者信息

Jones B L, Fontanini D, Jarvinen M, Pekkarinen A

机构信息

Cereal Crops Research Unit, Agricultural Research Service, 501 N. Walnut Street, Madison, Wisconsin 53705, USA.

出版信息

Anal Biochem. 1998 Oct 15;263(2):214-20. doi: 10.1006/abio.1998.2819.

Abstract

Endoproteinase assays with gels containing incorporated gelatin have shown that gelatin is an exceptional substrate for studying enzymes from different sources. However, due to its solubility in trichloroacetic acid, gelatin is not suited to "in-solution" assays carried out in the classic manner (by reading the absorbance of supernatants of hydrolysis reactions after the substrate has been precipitated with trichloroacetic acid). In this paper we demonstrate that gelatin can be used for such analyses by using isopropanol as precipitating reagent. Alternatively, azogelatin, which is precipitated by trichloroacetic acid, can be used. Azogelatin also serves as a very good substrate. One problem with using gelatin (or any nonderivatized protein) as substrate for measuring the activity of crude enzyme preparations is that protein contaminants in the enzyme preparation are hydrolyzed. The resulting peptides are impossible to differentiate from those released from the gelatin substrate. This problem is obviated when azogelatin is used, since its peptides are detected at 440 nm, where nonderivatized peptides do not absorb. Unlike some azo-derivatized proteins, azogelatin is soluble from pH 3.0 to 9.0. This, together with the fact that it is hydrolyzed by many different endoproteinases, makes it suitable for many applications.

摘要

使用含有掺入明胶的凝胶进行的内肽酶测定表明,明胶是研究不同来源酶的一种特殊底物。然而,由于其在三氯乙酸中的溶解性,明胶不适合以经典方式进行的“溶液中”测定(通过读取底物用三氯乙酸沉淀后水解反应上清液的吸光度)。在本文中,我们证明明胶可以通过使用异丙醇作为沉淀剂用于此类分析。或者,可以使用被三氯乙酸沉淀的偶氮明胶。偶氮明胶也是一种非常好的底物。使用明胶(或任何未衍生化的蛋白质)作为测量粗酶制剂活性的底物的一个问题是酶制剂中的蛋白质污染物会被水解。产生的肽无法与从明胶底物释放的肽区分开来。当使用偶氮明胶时,这个问题就消除了,因为它的肽在440nm处被检测到,而未衍生化的肽在该波长下不吸收。与一些偶氮衍生化的蛋白质不同,偶氮明胶在pH 3.0至9.0范围内可溶。这一点,连同它能被许多不同的内肽酶水解这一事实,使其适用于许多应用。

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