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铜绿假单胞菌lasB1突变体产生一种在活性位点His-223处被取代的弹性蛋白酶,其在活性、加工和分泌方面存在缺陷。

Pseudomonas aeruginosa lasB1 mutants produce an elastase, substituted at active-site His-223, that is defective in activity, processing, and secretion.

作者信息

McIver K S, Olson J C, Ohman D E

机构信息

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

出版信息

J Bacteriol. 1993 Jul;175(13):4008-15. doi: 10.1128/jb.175.13.4008-4015.1993.

Abstract

Pseudomonas aeruginosa secretes elastase in a multistep process which begins with the synthesis of a preproelastase (53.6 kDa) encoded by lasB, is followed by processing to proelastase (51 kDa), and concludes with the rapid accumulation of mature elastase (33 kDa) in the extracellular environment. In this study, mutants of P. aeruginosa were constructed by gene replacement which expressed lasB1, an allele altered in vitro at an active-site His-223-encoding codon. The lasB1 allele was exchanged for chromosomal lasB sequences in two strain backgrounds, FRD2 and PAO1, through a selectable-cassette strategy which placed a downstream Tn501 marker next to lasB1 and provided the selection for homologous recombination with the chromosome. Two lasB1 mutants, FRD720 and PDO220, were characterized, and their culture supernatants contained greatly reduced proteolytic (9-fold) and elastolytic (14- to 20-fold) activities compared with their respective parental lasB+ strains. This was primarily due to the effect of His-223 substitution on substrate binding by elastase and thus its proteolytic activity. However, the concentration of supernatant elastase antigen was also reduced (five- to sevenfold) in the mutant strains compared with the parental strains. An immunoblot analysis of cell extracts showed a large accumulation of 51-kDa proelastase within lasB1 mutant cells which was not seen in wild-type cell extracts. A time course study showed that production of extracellular elastase was inefficient in the lasB1 mutants compared with that of parental strains. This showed that expression of an enzymatically defective elastase inhibits proper processing of proelastase and provides further evidence for autoproteolytic processing of proelastase in P. aeruginosa. Unlike the parental strains, culture supernatants of the lasB1 mutants contained two prominent elastase species that were 33 and 36 kDa in size. Extracellular 51-kDa proelastase was barely detectable, even though it accumulated to high concentrations within the lasB1 mutant cells. These data suggest that production of an enzymatically defective elastase affects proper secretion because autoproteolytic processing of proelastase is necessary for efficient localization to the extracellular milieu. The appearance of reduced amounts of extracellular elastase and their sizes of 33 and 36 kDa suggest that lasB1-encoded elastase was processed by alternate, less-efficient processing mechanisms. Thus, proelastase must be processed by removal of nearly all of the 18-kDa propeptide before elastase is a protein competent for extracellular secretion.

摘要

铜绿假单胞菌通过多步骤过程分泌弹性蛋白酶,该过程始于由lasB编码的前弹性蛋白酶原(53.6 kDa)的合成,接着加工为弹性蛋白酶原(51 kDa),并以成熟弹性蛋白酶(33 kDa)在细胞外环境中的快速积累告终。在本研究中,通过基因替换构建了铜绿假单胞菌突变体,其表达lasB1,这是一个在体外对编码活性位点His-223的密码子进行了改变的等位基因。通过一种可选择盒策略,在两个菌株背景FRD2和PAO1中,将lasB1等位基因与染色体上的lasB序列进行交换,该策略在lasB1旁边放置了一个下游Tn501标记,并为与染色体的同源重组提供选择。对两个lasB1突变体FRD720和PDO220进行了表征,与各自的亲本lasB+菌株相比,它们的培养上清液中蛋白水解活性(降低了9倍)和弹性水解活性(降低了14至20倍)大大降低。这主要是由于His-223取代对弹性蛋白酶底物结合及其蛋白水解活性的影响。然而,与亲本菌株相比,突变体菌株中上清液弹性蛋白酶抗原的浓度也降低了(5至7倍)。对细胞提取物的免疫印迹分析表明,在lasB1突变体细胞内大量积累了51 kDa的弹性蛋白酶原,而在野生型细胞提取物中未观察到这种情况。一项时间进程研究表明,与亲本菌株相比,lasB1突变体中细胞外弹性蛋白酶的产生效率低下。这表明酶缺陷型弹性蛋白酶的表达会抑制弹性蛋白酶原的正确加工,并为铜绿假单胞菌中弹性蛋白酶原的自蛋白水解加工提供了进一步的证据。与亲本菌株不同,lasB1突变体的培养上清液中含有两种主要的弹性蛋白酶,大小分别为33 kDa和36 kDa。细胞外51 kDa的弹性蛋白酶原几乎检测不到,尽管它在lasB1突变体细胞内积累到了高浓度。这些数据表明,酶缺陷型弹性蛋白酶的产生会影响正确的分泌,因为弹性蛋白酶原的自蛋白水解加工对于有效定位到细胞外环境是必要的。细胞外弹性蛋白酶量的减少及其33 kDa和36 kDa的大小表明,lasB1编码的弹性蛋白酶是通过替代的、效率较低的加工机制进行加工的。因此,在弹性蛋白酶成为一种能够进行细胞外分泌的蛋白质之前,弹性蛋白酶原必须通过去除几乎所有18 kDa的前肽来进行加工。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e47d/204829/5477f07c7087/jbacter00055-0107-a.jpg

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