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铜绿假单胞菌LasA蛋白酶中His-120位点的一个替代突变会阻断酶活性,但不影响前肽加工或细胞外分泌。

A substitution at His-120 in the LasA protease of Pseudomonas aeruginosa blocks enzymatic activity without affecting propeptide processing or extracellular secretion.

作者信息

Gustin J K, Kessler E, Ohman D E

机构信息

Department of Microbiology and Immunology, University of Tennessee, Veterans Affairs Medical Center, Memphis 38163, USA.

出版信息

J Bacteriol. 1996 Nov;178(22):6608-17. doi: 10.1128/jb.178.22.6608-6617.1996.

Abstract

The LasA protease of Pseudomonas aeruginosa can degrade elastin and is an important contributor to the pathogenesis of this organism. LasA (20 kDa) is a member of the beta-lytic endopeptidase family of extracellular bacterial proteases, and it shows high-level staphylolytic activity. We sequenced the lasA gene from strain FRD1 and overexpressed it in Escherichia coli. The lasA gene encodes a precursor, known as pre-proLasA, of 45,582 Da. Amino-terminal sequence analysis allowed the identification of the signal peptidase cleavage site and revealed that the 31-amino-acid signal peptide was removed in E. coli. The remaining proLasA (42 kDa) did not undergo autoproteolytic processing and showed little staphylolytic activity. However, it was readily processed to a 20-kDa active staphylolytic protease by incubation with trypsin or with the culture filtrate of a P. aeruginosa lasAdelta mutant. Thus, removal of the propeptide (22 kDa) was required to convert proLasA into an active protease. Although LasA protease was critical for staphylolytic activity, other proteases like elastase were found to enhance staphylolysis. Under the control of an inducible trc promoter, lasA was overexpressed in P. aeruginosa and the processing intermediates were examined. Compared with wild-type cells, the overproducing cells accumulated more 42-kDa proLasA species, and the culture supernatants of the overproducing cells showed increased levels of active 20-kDa LasA protease. Small amounts of a 25-kDa extracellular LasA-related protein, which could represent a potential processing intermediate, were also observed. To better understand the structure-function relationships in LasA protease, we tested whether His-120-X-His-122 in the mature portion of LasA plays a role in activity. This motif and surrounding sequences are conserved in the related beta-lytic protease of Achromobacter lyticus. Oligonucleotide-directed mutagenesis was used to change His-120 to Ala-120, thus forming the lasA5 allele. The product of lasA5 expressed from the chromosome of P. aeruginosa was processed to a stable, secreted 20-kDa protein (designated LasA-H120A) which was devoid of staphylolytic activity. This suggests that His-120 is essential for LasA activity and favors the possibility that proLasA processing and secretion in P. aeruginosa can proceed via mechanisms which do not involve autoproteolysis.

摘要

铜绿假单胞菌的LasA蛋白酶能够降解弹性蛋白,是该菌致病机制中的一个重要因素。LasA(20 kDa)是细胞外细菌蛋白酶β-溶菌内肽酶家族的成员,具有高水平的溶葡萄球菌活性。我们对菌株FRD1的lasA基因进行了测序,并在大肠杆菌中使其过表达。lasA基因编码一种45,582 Da的前体,称为前原LasA。氨基末端序列分析确定了信号肽酶切割位点,结果显示在大肠杆菌中31个氨基酸的信号肽被去除。剩余的原LasA(42 kDa)未进行自催化加工,且几乎没有溶葡萄球菌活性。然而,通过与胰蛋白酶或铜绿假单胞菌lasA缺失突变体的培养滤液孵育,它很容易被加工成一种20 kDa的活性溶葡萄球菌蛋白酶。因此,去除前肽(22 kDa)是将原LasA转化为活性蛋白酶所必需的。虽然LasA蛋白酶对溶葡萄球菌活性至关重要,但发现其他蛋白酶如弹性蛋白酶可增强溶葡萄球菌作用。在可诱导的trc启动子控制下,lasA在铜绿假单胞菌中过表达,并对加工中间体进行了检测。与野生型细胞相比,过量表达的细胞积累了更多42 kDa的原LasA种类,且过量表达细胞的培养上清液中活性20 kDa的LasA蛋白酶水平升高。还观察到少量25 kDa的细胞外LasA相关蛋白,它可能代表一种潜在的加工中间体。为了更好地理解LasA蛋白酶的结构-功能关系,我们测试了LasA成熟部分中的His-120-X-His-122是否在活性中起作用。这个基序及其周围序列在溶杆菌属相关的β-溶菌蛋白酶中是保守的。使用寡核苷酸定向诱变将His-120变为Ala-120,从而形成lasA5等位基因。从铜绿假单胞菌染色体表达的lasA5产物被加工成一种稳定的、分泌型的20 kDa蛋白(命名为LasA-H120A),它没有溶葡萄球菌活性。这表明His-120对LasA活性至关重要,并支持铜绿假单胞菌中原LasA的加工和分泌可能通过不涉及自催化的机制进行的可能性。

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