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嗜热栖热菌蛋白酶型蛋白酶水栖溶素I的一种38 kDa前体蛋白,其C端有延伸序列:蛋白纯化及体外加工

A 38 kDa precursor protein of aqualysin I (a thermophilic subtilisin-type protease) with a C-terminal extended sequence: its purification and in vitro processing.

作者信息

Kurosaka K, Ohta T, Matsuzawa H

机构信息

Department of Biotechnology, University of Tokyo, Japan.

出版信息

Mol Microbiol. 1996 Apr;20(2):385-9. doi: 10.1111/j.1365-2958.1996.tb02625.x.

DOI:10.1111/j.1365-2958.1996.tb02625.x
PMID:8733236
Abstract

The precursor of aqualysin I, an extracellular subtilisin-type protease produced by Thermus aquaticus, consists of four domains: an N-terminal signal peptide, an N-terminal pro-sequence, a protease domain, and a C-terminal extended sequence. In an Escherichia coli expression system for the aqualysin I gene, a 38 kDa precursor protein consisting of the protease domain and the C-terminal extended sequence is accumulated in the membrane fraction and processed to a 28 kDa mature enzyme upon heat treatment at 65 degrees C. The 38 kDa precursor protein is separated as a soluble form from denatured E. coli proteins after heat treatment. Accordingly, purification of the 38 kDa proaqualysin I was performed using chromatography. The purified precursor protein gave a single band on SDS-polyacrylamide gels. The precursor protein exhibited proteolytic activity comparable to that of the mature enzyme. The purified precursor protein was processed to the mature enzyme upon heat treatment. The processing was inhibited by diisopropyl fluorophosphate. The processing rate increased upon either the addition of mature aqualysin I or upon an increase in the concentration of the precursor, suggesting that the cleavage of the C-terminal extended sequence occurs through an intermolecular self-processing mechanism.

摘要

嗜热水生栖热菌产生的胞外枯草杆菌蛋白酶类蛋白酶水栖溶素I的前体由四个结构域组成:一个N端信号肽、一个N端前序列、一个蛋白酶结构域和一个C端延伸序列。在水栖溶素I基因的大肠杆菌表达系统中,由蛋白酶结构域和C端延伸序列组成的38 kDa前体蛋白在膜组分中积累,并在65℃热处理后加工成28 kDa的成熟酶。热处理后,38 kDa前体蛋白以可溶形式与变性的大肠杆菌蛋白分离。因此,使用色谱法对38 kDa前水栖溶素I进行了纯化。纯化的前体蛋白在SDS-聚丙烯酰胺凝胶上呈现单一条带。前体蛋白表现出与成熟酶相当的蛋白水解活性。纯化的前体蛋白在热处理后加工成成熟酶。该加工过程受到二异丙基氟磷酸的抑制。添加成熟的水栖溶素I或增加前体浓度后,加工速率都会提高,这表明C端延伸序列的切割是通过分子间自我加工机制发生的。

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