Pukatzki Stefan, Kessin Richard H, Mekalanos John J
Department of Microbiology and Molecular Genetics, Harvard Medical School, 200 Longwood Avenue, Boston, MA 02115, USA.
Proc Natl Acad Sci U S A. 2002 Mar 5;99(5):3159-64. doi: 10.1073/pnas.052704399. Epub 2002 Feb 26.
Genetically accessible host models are useful for studying microbial pathogenesis because they offer the means to identify novel strategies that pathogens use to evade immune mechanisms, cause cellular injury, and induce disease. We have developed conditions under which the human pathogen Pseudomonas aeruginosa infects Dictyostelium discoideum, a genetically tractable eukaryotic organism. When D. discoideum is plated on nutrient agar plates with different P. aeruginosa strains, the bacteria form lawns on these plates with amoebae embedded in them. Virulent P. aeruginosa strains kill these amoebae and leave an intact bacterial lawn. A number of P. aeruginosa mutants have been identified that are avirulent in this assay. Amoebae feed on these bacteria and form plaques in their bacterial lawns. One avirulent mutant strain carries an insertional mutation in the lasR gene. LasR is a transcription factor that controls a number of virulence genes in a density-dependent fashion. Another class of avirulent P. aeruginosa mutants is defective in type III secretion. One mutant lacks the PscJ protein, a structural component of the secretion apparatus, suggesting that cytotoxins are injected into the D. discoideum cell. One of these cytotoxins is ExoU, and exoU mutants are avirulent toward D. discoideum. Complementation of the lasR and exoU mutations restores virulence. Therefore, P. aeruginosa uses conserved virulence pathways to kill D. discoideum.
基因易操作的宿主模型对于研究微生物发病机制很有用,因为它们提供了识别病原体用于逃避免疫机制、造成细胞损伤和引发疾病的新策略的方法。我们已经开发出了人类病原体铜绿假单胞菌感染盘基网柄菌(一种基因易于操作的真核生物)的条件。当将盘基网柄菌接种在含有不同铜绿假单胞菌菌株的营养琼脂平板上时,细菌在这些平板上形成菌苔,其中包埋着变形虫。毒力强的铜绿假单胞菌菌株会杀死这些变形虫并留下完整的细菌菌苔。已经鉴定出一些在该试验中无毒力的铜绿假单胞菌突变体。变形虫以这些细菌为食,并在它们的细菌菌苔中形成噬菌斑。一种无毒力突变菌株在lasR基因中携带插入突变。LasR是一种转录因子,它以密度依赖的方式控制许多毒力基因。另一类无毒力的铜绿假单胞菌突变体在III型分泌方面存在缺陷。一种突变体缺乏PscJ蛋白,它是分泌装置的一种结构成分,这表明细胞毒素被注入到盘基网柄菌细胞中。这些细胞毒素之一是ExoU,exoU突变体对盘基网柄菌无毒力。lasR和exoU突变的互补恢复了毒力。因此,铜绿假单胞菌利用保守的毒力途径来杀死盘基网柄菌。