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大肠杆菌胞质金属内蛋白酶Ci的纯化与特性分析

Purification and characterization of protease Ci, a cytoplasmic metalloendoprotease in Escherichia coli.

作者信息

Kim K I, Baek S H, Hong Y M, Kang M S, Ha D B, Goldberg A L, Chung C H

机构信息

Department of Molecular Biology, College of Natural Sciences, Seoul National University, Korea.

出版信息

J Biol Chem. 1995 Dec 15;270(50):29799-805.

PMID:8530373
Abstract

Protease Ci, a cytoplasmic metalloprotease in Escherichia coli, has been purified to apparent homogeneity by conventional chromatographic procedures using 125I-labeled oxidized insulin B-chain as a substrate. The purified enzyme behaves as a 54-kDa protein under both denaturing and nondenaturing conditions, suggesting that it consists of a single polypeptide chain. It is inhibited by metal-chelating agents, including o-phenanthroline and NaCN, but not by inhibitors of serine proteases or thiol-blocking agents. Furthermore, protease Ci was found to contain 1.1 mol of zinc per mol of the enzyme upon analysis by HR ICP mass spectroscopy. Thus, protease Ci must be a zinc metalloprotease. Among the polypeptides tested as substrates, oxidized insulin B-chain and glucagon are most rapidly hydrolyzed. Intact insulin is a much poorer substrate than oxidized insulin B-chain, even though the affinity of the enzyme to intact insulin is approximately 100-fold greater than that to the B-chain. Since unlabeled oxidized insulin A-chain is capable of inhibiting the hydrolysis of 125I-labeled insulin B-chain, it also appears to be a substrate. Protease Ci also degrades lysozyme and lactalbumin, although to a much lesser extent than oxidized insulin B-chain. However, it shows little or no activity against proteins larger than 15 kDa (e.g. ovalbumin and denatured bovine serum albumin). Hydrolysis of oxidized insulin B-chain followed by amino acid composition analyses of the cleavage products reveals that as many as 10 of its 29 peptide bonds are hydrolyzed by protease Ci. This ability to hydrolyze relatively small polypeptides suggests that protease Ci may catalyze the later steps in the pathway for intracellular protein breakdown.

摘要

蛋白酶Ci是大肠杆菌中的一种胞质金属蛋白酶,通过常规色谱方法,以125I标记的氧化胰岛素B链为底物,已被纯化至表观均一。纯化后的酶在变性和非变性条件下均表现为54 kDa的蛋白质,表明它由一条单一的多肽链组成。它受到金属螯合剂的抑制,包括邻菲罗啉和NaCN,但不受丝氨酸蛋白酶抑制剂或巯基阻断剂的抑制。此外,通过高分辨率电感耦合等离子体质谱分析发现,每摩尔蛋白酶Ci含有1.1摩尔锌。因此,蛋白酶Ci一定是一种锌金属蛋白酶。在作为底物测试的多肽中,氧化胰岛素B链和胰高血糖素水解速度最快。完整的胰岛素作为底物比氧化胰岛素B链差得多,尽管该酶对完整胰岛素的亲和力比对B链大约高100倍。由于未标记的氧化胰岛素A链能够抑制125I标记的胰岛素B链的水解,它似乎也是一种底物。蛋白酶Ci也能降解溶菌酶和乳白蛋白,尽管程度比氧化胰岛素B链小得多。然而,它对大于15 kDa的蛋白质(如卵清蛋白和变性牛血清白蛋白)几乎没有活性或没有活性。对氧化胰岛素B链进行水解,然后对裂解产物进行氨基酸组成分析,结果显示其29个肽键中有多达10个被蛋白酶Ci水解。这种水解相对较小多肽的能力表明,蛋白酶Ci可能催化细胞内蛋白质降解途径的后期步骤。

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