Kang P J, Hauser A R, Apodaca G, Fleiszig S M, Wiener-Kronish J, Mostov K, Engel J N
Department of Medicine, University of California, San Francisco, 94143, USA.
Mol Microbiol. 1997 Jun;24(6):1249-62. doi: 10.1046/j.1365-2958.1997.4311793.x.
We have developed a simple, reproducible and rapid genetic screen for Pseudomonas aeruginosa-induced epithelial cell cytotoxicity in cultures of MDCK cells. This screen was used to isolate isogenic transposon-tagged non-cytotoxic mutants of a cytotoxic and lung-virulent strain of P. aeruginosa (PA103). The transposon-insertion site was determined by using an inverse polymerase chain reaction followed by DNA-sequence analysis. On the basis of phenotype and sequence analysis, these mutants fell into four classes. One class had absent or defective pill, based on their resistance to phage PO4 and/or loss of twitching motility (twt-). A second class exhibited decreased adherence. A third class of mutants exhibited probable defects in the machinery or targets of type III protein secretion. A final class of mutants exhibited decreased but not absent cytotoxicity. This class included members of the first three classes as well as other mutants. These results suggest that localized cytotoxicity is likely to require several steps and several components, including pili and other (unidentified) extracellular proteins. The type III protein-secretion apparatus appears to be involved in this process.
我们开发了一种简单、可重复且快速的基因筛选方法,用于检测铜绿假单胞菌在MDCK细胞培养物中诱导的上皮细胞细胞毒性。该筛选方法用于分离铜绿假单胞菌(PA103)细胞毒性和肺毒性菌株的同基因转座子标记的无细胞毒性突变体。通过反向聚合酶链反应并结合DNA序列分析来确定转座子插入位点。基于表型和序列分析,这些突变体分为四类。一类基于对噬菌体PO4的抗性和/或失去颤动运动性(twt-),菌毛缺失或有缺陷。第二类表现出黏附性降低。第三类突变体在III型蛋白分泌机制或靶点上可能存在缺陷。最后一类突变体表现出细胞毒性降低但并非完全没有细胞毒性。这类包括前三类的成员以及其他突变体。这些结果表明,局部细胞毒性可能需要几个步骤和几个成分,包括菌毛和其他(未鉴定的)细胞外蛋白。III型蛋白分泌装置似乎参与了这一过程。