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嗜热真菌美丽被孢霉硫磺变种细胞外丝氨酸蛋白酶热肌动蛋白酶的生产、纯化及特性研究

Production, purification and characterization of thermomycolase, the extracellular serine protease of the thermophilic fungus Malbranchea pulchella var. sulfurea.

作者信息

Ong P S, Gaucher G M

出版信息

Can J Microbiol. 1976 Feb;22(2):165-76. doi: 10.1139/m76-023.

Abstract

The thermophilic fungus Malbranchea pulchella produces a single extracellular, alkaline, serine protease when grown at 45 degrees C, on 2% casein as sole carbon source. The growth-associated production of protease in submerged cultures was inhibited by addition of glucose, amino acids, or yeast extract. A simple four-step purification which yields homogeneous protease in 78% yield is described. The protease has an isoelectric point of 6.0, a pH optimum of 8.5, and is completely inhibited by serine protease inhibitors. A specificity study with small synthetic ester substrates indicated that the protease preferentially hydrolyzed bonds situated on the carboxyl side of aromatic or apolar amino acid residues which are not beta-branched, positively charged or of the D configuration. Peptidase substrates and others such as N-acetyl-L-tyrosine-ethyl ester were not hydrolyzed. The protease was stable over a broad range of pH (6.5-9.5 at 30 degrees C, 20 h), and was particularly thermostable (t1/2 = 110 min at 73 degrees C, pH 7.4) in the presence of Ca2+ (10 mM). Macromolecules and Ca2+ also provide protection against the significant autolysis which occurs at pure protease concentrations greater than 0.01 mg/mo, as well as against surface denaturation which is enhanced by the presence of a silicone antifoam agent. Hence the stability of protease in submerged cultures is rationalized.

摘要

嗜热真菌美丽马尔布兰奇菌在以2%酪蛋白作为唯一碳源、45℃培养时会产生一种单一的细胞外碱性丝氨酸蛋白酶。在深层培养中,添加葡萄糖、氨基酸或酵母提取物会抑制与生长相关的蛋白酶产生。本文描述了一种简单的四步纯化方法,该方法能以78%的产率获得纯蛋白酶。该蛋白酶的等电点为6.0,最适pH为8.5,并且完全被丝氨酸蛋白酶抑制剂抑制。对小型合成酯底物的特异性研究表明,该蛋白酶优先水解位于非β-分支、带正电荷或D构型的芳香族或非极性氨基酸残基羧基侧的键。肽酶底物和其他物质如N-乙酰-L-酪氨酸乙酯不会被水解。该蛋白酶在较宽的pH范围内稳定(30℃、20小时时为6.5 - 9.5),并且在存在Ca2+(10 mM)时特别耐热(73℃、pH 7.4时t1/2 = 110分钟)。大分子和Ca2+还能防止在纯蛋白酶浓度大于0.01 mg/ml时发生的显著自溶,以及防止因存在有机硅消泡剂而增强的表面变性。因此,该蛋白酶在深层培养中的稳定性得到了解释。

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