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Published on: April 8, 2016
Functional mapping of PilF and PilQ in the Pseudomonas aeruginosa type IV pilus system
Jason Koo1, Tim Tang, Hanjeong Harvey
1Program in Molecular Structure and Function, Research Institute, Hospital for Sick Children, Toronto, ON, Canada.
Abstract:
Pseudomonas aeruginosa uses type IV pili (T4P) to interact with the environment and as key virulence factors when acting as an opportunistic pathogen. Assembly of the outer membrane PilQ secretin channel through which the pili are extruded is essential for pilus biogenesis. The P. aeruginosa T4P pilotin, PilF, is required for PilQ outer membrane localization and assembly into secretins and contains six tetratricopeptide (TPR) protein-protein interaction motifs, suggesting that the two proteins interact. In this study, we found that the first four TPR motifs of PilF are sufficient for PilQ outer membrane targeting, oligomerization, and function. Guided by our structure of PilF, site-directed mutagenesis of the protein surface revealed that a hydrophobic groove on the first TPR is required for PilF-mediated PilQ assembly. Deletion of individual domains within PilQ suggests that the N0, KH-like, or secretin domain, but not the C-terminus, interacts with PilF. Purified PilQ was found to pull down PilF from Pseudomonas cell lysates. Together, these data allow us to propose a model for PilF function in the T4P system. PilF interacts directly or indirectly with the PilQ monomer after translocation of both proteins through the inner membrane and acts as a co-chaperone with the Lol system to facilitate transit across the periplasm to the outer membrane. The mechanism of PilQ insertion and assembly, which appears to be independent of the Bam system, remains to be determined.
Insights
Pseudomonas aeruginosa type IV pili assembly requires the PilQ secretin channel. PilF pilotin
Area of Science:
- Microbiology
- Molecular Biology
- Structural Biology
Background:
- Pseudomonas aeruginosa utilizes type IV pili (T4P) for environmental interaction and virulence.
- Assembly of the outer membrane PilQ secretin channel is critical for T4P biogenesis.
- The T4P pilotin, PilF, is essential for PilQ localization and assembly.
Purpose of the Study:
- To investigate the interaction between PilF and PilQ in P. aeruginosa.
- To determine the domains of PilF and PilQ involved in their interaction.
- To elucidate the role of PilF in PilQ assembly and T4P biogenesis.
Main Methods:
- Site-directed mutagenesis of PilF.
- Domain deletion analysis of PilQ.
- Co-immunoprecipitation assays (PilQ pull-down of PilF).
Main Results:
- The first four TPR motifs of PilF are sufficient for PilQ targeting, oligomerization, and function.
- A hydrophobic groove on PilF's first TPR is crucial for PilQ assembly.
- PilF interacts with PilQ's N0, KH-like, or secretin domains, not the C-terminus.
Conclusions:
- PilF acts as a co-chaperone, facilitating PilQ transport to the outer membrane.
- PilF directly or indirectly interacts with PilQ monomers post-inner membrane translocation.
- PilQ assembly mechanism is independent of the Bam system but requires further investigation.
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