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Defects in type III secretion correlate with internalization of Pseudomonas aeruginosa by epithelial cells
A R Hauser1, S Fleiszig, P J Kang
1Department of Medicine, University of California, San Francisco, 94143, USA.
Abstract:
Previous characterization of Pseudomonas aeruginosa clinical isolates has demonstrated an inverse correlation between cytotoxicity and internalization by epithelial cells. To further investigate this relationship, we tested PA103, a cytotoxic P. aeruginosa strain, and 33 isogenic noncytotoxic transposon mutants for internalization by Madin-Darby canine kidney cells. The majority of the mutants were not internalized, demonstrating that an inverse correlation between cytotoxicity and bacterial uptake by epithelial cells is not absolute. Six of the noncytotoxic mutants, however, demonstrated measurable levels of internalization by standard aminoglycoside exclusion assays even though internalization of wild-type strain PA103 was not detectable. All six had evidence of protein secretion defects involving two proteins, a 40-kDa protein and a 32-kDa protein. These proteins, designated PepB (for Pseudomonas exoprotein B) and PepD, respectively, each had characteristics of type III transported proteins. In addition, nucleotide sequencing studies demonstrated that PepB and PepD are homologs of YopB and YopD, respectively, type III secreted proteins of Yersinia spp. necessary for the translocation of effector molecules into the cytoplasmic compartment of eukaryotic cells. Thus, while many mutations in PA103 result in loss of cytotoxicity without an appreciable increase in internalization, defects in transport of type III secretion proteins PepB and PepD correlate with both loss of cytotoxicity and gain of internalization. These results are consistent with type III secretion of an inhibitor of internalization that requires PepB and PepD for translocation into the host cell.
Insights
Pseudomonas aeruginosa cytotoxicity and internalization are inversely related, but defects in type III secretion proteins PepB and PepD disrupt this, leading to reduced toxicity and increased bacterial uptake by host cells.
Area of Science:
- Microbiology
- Cell Biology
- Bacterial Pathogenesis
Background:
- Pseudomonas aeruginosa clinical isolates previously showed an inverse correlation between cytotoxicity and epithelial cell internalization.
- This study investigates the relationship between cytotoxicity and bacterial uptake in P. aeruginosa.
Purpose of the Study:
- To examine the internalization of a cytotoxic P. aeruginosa strain (PA103) and its noncytotoxic mutants by epithelial cells.
- To identify the mechanisms underlying the relationship between P. aeruginosa cytotoxicity and host cell interaction.
Main Methods:
- Tested PA103 and 33 isogenic noncytotoxic transposon mutants for internalization by Madin-Darby canine kidney cells.
- Utilized aminoglycoside exclusion assays to quantify bacterial uptake.
- Analyzed protein secretion defects and sequenced genes encoding identified proteins.
Main Results:
- Most noncytotoxic mutants showed no increased internalization, indicating the inverse correlation is not absolute.
- Six noncytotoxic mutants exhibited measurable internalization, unlike wild-type PA103.
- These six mutants had secretion defects involving Pseudomonas exoprotein B (PepB) and PepD, homologs of Yersinia spp. YopB and YopD.
- Defects in PepB and PepD transport correlated with both loss of cytotoxicity and gain of internalization.
Conclusions:
- While many mutations reduce cytotoxicity without increasing internalization, defects in type III secretion of PepB and PepD lead to decreased toxicity and enhanced bacterial uptake.
- Results suggest P. aeruginosa may secrete an internalization inhibitor requiring PepB and PepD for translocation into host cells.