Braun Peter, Bitter Wilbert, Tommassen Jan
Department of Molecular Microbiology and Institute of Biomembranes, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands1.
Microbiology (Reading). 2000 Oct;146 ( Pt 10):2565-2572. doi: 10.1099/00221287-146-10-2565.
The propeptide of Pseudomonas aeruginosa elastase functions both as an intramolecular chaperone required for the folding of the enzyme and as an inhibitor that prevents activity of the enzyme before its secretion into the extracellular medium. Since expression of the lasB gene, which encodes elastase, in Pseudomonas putida did not result in extracellular elastase activity, it has been suggested that the enzyme is not recognized by the Xcp secretion machinery of the heterologous host. Here, it is demonstrated that the proenzyme is normally processed in P. putida and that it is indeed not actively secreted by the Xcp machinery. Nevertheless, substantial amounts of the enzyme were detected in the extracellular medium. Co-immunoprecipitations revealed that the extracellular enzyme was associated with the propeptide, which explains the lack of enzymic activity. Since the propeptide-enzyme complex in P. putida apparently does not dissociate spontaneously, it is concluded that a host-specific factor is required to induce this event. Mutants were selected which showed extracellular elastase activity. Two mutations, located within the lasB gene, were further characterized. These mutations, resulting in the substitution of Ala and Thr at positions -15 and -153, respectively, of the propeptide (where position +1 is defined as the first residue of the mature enzyme) destabilized the propeptide-enzyme complex. It is concluded that Ala-15 and Thr-153 are required for the inhibitor function, but not for the chaperone function of the propeptide.
铜绿假单胞菌弹性蛋白酶的前肽既作为该酶折叠所需的分子内伴侣,又作为一种抑制剂,在酶分泌到细胞外介质之前阻止其活性。由于在恶臭假单胞菌中编码弹性蛋白酶的lasB基因的表达未导致细胞外弹性蛋白酶活性,因此有人提出该酶未被异源宿主的Xcp分泌机制识别。在此,证明了该酶原在恶臭假单胞菌中正常加工,并且确实未被Xcp机制主动分泌。然而,在细胞外介质中检测到大量该酶。免疫共沉淀显示细胞外酶与前肽相关,这解释了酶活性的缺乏。由于恶臭假单胞菌中的前肽-酶复合物显然不会自发解离,因此得出结论,需要宿主特异性因子来诱导这一事件。筛选出显示细胞外弹性蛋白酶活性的突变体。对位于lasB基因内的两个突变进行了进一步表征。这些突变分别导致前肽-15和-153位的丙氨酸和苏氨酸被取代(其中+1位被定义为成熟酶的第一个残基),使前肽-酶复合物不稳定。得出的结论是,丙氨酸-15和苏氨酸-153是前肽抑制剂功能所必需的,但不是伴侣功能所必需的。