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首页> 外文期刊>Infection and immunity >Genetic, immunological, and cytotoxic comparisons of Legionella proteolytic activities.
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Genetic, immunological, and cytotoxic comparisons of Legionella proteolytic activities.

机译:军团菌蛋白水解活性的遗传,免疫和细胞毒性比较。

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Several strains of Legionella pneumophila and other species of Legionella with proteolytic activities were compared by assays, including Southern hybridizations and Western immunoblots, to determine their proteolytic, hemolytic, and cytotoxic activities. Only proteases from strains of L. pneumophila were both hemolytic and cytotoxic, and proteolytic activities extracted from other species of Legionella possessed only hemolytic activity. A 4.0-kilobase DNA sequence encoding the 38-kilodalton metalloprotease from L. pneumophila Philadelphia 1 that we showed previously was responsible for the observed hemolytic and cytotoxic phenotypes (F. D. Quinn and L. S. Tompkins, Mol. Microbiol., 3:797-805, 1989) was used in Southern hybridizations to probe chromosomal DNA from several strains of L. pneumophila and other Legionella species. The probe hybridized to the chromosomal DNA of all serogroups of L. pneumophila but not to any strains of L. dumoffii, L. micdadei, L. feeleii, or L. jordanis that we examined. Additionally, Western immunoblots done with rabbit antisera made to the cloned L. pneumophila protease demonstrated cross-reactions among 38-kilodalton proteins from strains of L. pneumophila, but no reactions were observed with proteins from other species of Legionella. Similarly, the cloned protease from L. pneumophila reacted with convalescent-phase sera from patients infected with L. pneumophila, but not with antisera isolated from patients infected with other Legionella species. Thus, despite some similarities among the proteolytic activities of members of the genus Legionella, including proteolytic and hemolytic phenotypes, metal requirements for zinc or iron, sensitivity to EDTA, and temperature and pH optima, we documented distinct genetic, immunological, and cytotoxicity differences among the proteolytic activities produced by Legionella species.
机译:通过测定,包括Southern杂交和Western免疫印迹,比较了几种具有蛋白水解活性的嗜肺军团杆菌和其他军团菌菌株,以确定它们的蛋白水解,溶血和细胞毒性活性。仅来自嗜肺乳杆菌的菌株的蛋白酶具有溶血性和细胞毒性,并且从军团菌其他物种提取的蛋白水解活性仅具有溶血活性。我们先前显示的4.0碱基碱基的DNA序列编码了来自费城肺炎链球菌38公斤碱基的金属蛋白酶,这是我们观察到的溶血和细胞毒性表型的原因(FD Quinn和LS Tompkins,Mol.Microbiol。,3:797-805,1989) )被用于Southern杂交,以探测来自多个嗜肺乳杆菌和其他军团菌属菌株的染色体DNA。该探针与嗜肺乳杆菌的所有血清群的染色体DNA杂交,但与我们检查的杜氏乳杆菌,米氏乳杆菌,费氏乳杆菌或约旦乳杆菌的任何菌株均不杂交。此外,用对克隆的肺炎嗜血杆菌蛋白酶制备的兔抗血清进行的Western免疫印迹显示,来自肺炎嗜血杆菌菌株的38-千屈顿蛋白之间发生交叉反应,但未观察到与其他军团菌蛋白质的反应。同样,克隆自肺炎链球菌的蛋白酶与感染了肺炎链球菌的患者的恢复期血清反应,但不与分离自感染其他军团菌的患者的抗血清反应。因此,尽管军团菌属成员的蛋白水解活性之间存在某些相似之处,包括蛋白水解和溶血表型,锌或铁的金属需求量,对EDTA的敏感性以及最佳温度和pH值,我们仍记录了不同基因,免疫和细胞毒性之间的差异。军团菌产生的蛋白水解活性。

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