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铜绿假单胞菌弹性蛋白酶活性位点His-223的替换以及突变的lasB等位基因在大肠杆菌中的表达显示了前弹性蛋白酶自催化加工的证据。

Substitution of active-site His-223 in Pseudomonas aeruginosa elastase and expression of the mutated lasB alleles in Escherichia coli show evidence for autoproteolytic processing of proelastase.

作者信息

McIver K, Kessler E, Ohman D E

机构信息

Department of Microbiology and Immunology, University of Tennessee, Memphis.

出版信息

J Bacteriol. 1991 Dec;173(24):7781-9. doi: 10.1128/jb.173.24.7781-7789.1991.

Abstract

The neutral metalloprotease elastase is one of the major proteins secreted into the culture medium by many Pseudomonas aeruginosa strains. Encoded by the lasB gene, the 33-kDa elastase is initially synthesized as a 53-kDa preproenzyme which is processed to the mature form via a 51-kDa proelastase intermediate. To facilitate studies on proteolytic processing of elastase precursors and on secretion, we developed systems for overexpression of lasB in Escherichia coli under the control of the inducible T7 and tac promoters. Although the 51-kDa proelastase form was detectable in E. coli under inducible conditions, most of the elastase produced under these conditions was found in an enzymatically active 33-kDa form. The amino-terminal sequence of the first 15 amino acid residues of this 33-kDa elastase species was identical to that of the mature P. aeruginosa enzyme, suggesting that processing was autocatalytic. To test this possibility, the codon in lasB encoding His-223, a presumed active-site residue, was changed to encode Asp-223 (lasB1) and Tyr-223 (lasB2). The effects of these mutations on enzyme activity and processing were examined. No proteolytic or elastolytic activities were detected in extracts of E. coli cells containing the lasB mutant alleles. Overexpression of the mutated lasB genes in E. coli resulted in the accumulation of the corresponding 51-kDa proelastase species. These were processed in vitro to the respective 33-kDa forms by incubation with exogenous purified elastase, without an increase in proteolytic activity. Molecular modeling studies suggest that the mutations have little or no effect on the conformation of the mutant elastases. In addition, wild-type elastase and the mutant proelastases were localized to the periplasm of E. coli. The present results confirm that His-223 is essential for elastase activity and provide evidence for autoproteolytic processing of proelastase.

摘要

中性金属蛋白酶弹性蛋白酶是许多铜绿假单胞菌菌株分泌到培养基中的主要蛋白质之一。由lasB基因编码的33 kDa弹性蛋白酶最初以53 kDa的前原酶形式合成,该前原酶通过51 kDa的弹性蛋白酶原中间体加工成成熟形式。为了便于研究弹性蛋白酶前体的蛋白水解加工和分泌,我们开发了在可诱导的T7和tac启动子控制下在大肠杆菌中过表达lasB的系统。尽管在可诱导条件下在大肠杆菌中可检测到51 kDa的弹性蛋白酶原形式,但在这些条件下产生的大多数弹性蛋白酶以酶活性的33 kDa形式存在。这种33 kDa弹性蛋白酶物种的前15个氨基酸残基的氨基末端序列与成熟的铜绿假单胞菌酶相同,表明加工是自催化的。为了测试这种可能性,将lasB中编码假定的活性位点残基His-223的密码子改为编码Asp-223(lasB1)和Tyr-223(lasB2)。检查了这些突变对酶活性和加工的影响。在含有lasB突变等位基因的大肠杆菌细胞提取物中未检测到蛋白水解或弹性溶解活性。lasB突变基因在大肠杆菌中的过表达导致相应的51 kDa弹性蛋白酶原物种积累。通过与外源纯化的弹性蛋白酶孵育,这些在体外被加工成各自的33 kDa形式,而蛋白水解活性没有增加。分子建模研究表明,这些突变对突变弹性蛋白酶的构象几乎没有影响。此外,野生型弹性蛋白酶和突变型弹性蛋白酶原定位于大肠杆菌的周质。目前的结果证实His-223对弹性蛋白酶活性至关重要,并为弹性蛋白酶原的自蛋白水解加工提供了证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e298/212568/44add960d951/jbacter01042-0054-a.jpg

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