3D structure/function analysis of PilX reveals how minor pilins can modulate the virulence properties of type IV pili
- 2 October 2007
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 104 (40) , 15888-15893
- https://doi.org/10.1073/pnas.0707581104
Abstract
Type IV pili (Tfp) are widespread filamentous bacterial organelles that mediate multiple virulence-related phenotypes. They are composed mainly of pilin subunits, which are processed before filament assembly by dedicated prepilin peptidases. Other proteins processed by these peptidases, whose molecular nature and mode of action remain enigmatic, play critical roles in Tfp biology. We have performed a detailed structure/function analysis of one such protein, PilX from Neisseria meningitidis, which is crucial for formation of bacterial aggregates and adhesion to human cells. The x-ray crystal structure of PilX reveals the alpha/beta roll fold shared by all pilins, and we show that this protein colocalizes with Tfp. These observations suggest that PilX is a minor, or low abundance, pilin that assembles within the filaments in a similar way to pilin. Deletion of a PilX distinctive structural element, which is predicted to be exposed on the filament surface, abolishes aggregation and adhesion. Our results support a model in which surface-exposed motifs in PilX subunits stabilize bacterial aggregates against the disruptive force of pilus retraction and illustrate how a minor pilus component can enhance the functional properties of pili of rather simple composition and structure.Keywords
This publication has 37 references indexed in Scilit:
- Crystal Structures of the Pilus Retraction Motor PilT Suggest Large Domain Movements and Subunit Cooperation Drive MotilityStructure, 2007
- Type IV pili‐dependent gliding motility in the Gram‐positive pathogen Clostridium perfringens and other ClostridiaMolecular Microbiology, 2006
- Type IV Pilus Structure by Cryo-Electron Microscopy and Crystallography: Implications for Pilus Assembly and FunctionsMolecular Cell, 2006
- Type IV Pilin Structures: Insights on Shared Architecture, Fiber Assembly, Receptor Binding and Type II SecretionMicrobial Physiology, 2006
- A systematic genetic analysis in Neisseria meningitidis defines the Pil proteins required for assembly, functionality, stabilization and export of type IV piliMolecular Microbiology, 2006
- A conserved set of pilin‐like molecules controls type IV pilus dynamics and organelle‐associated functions in Neisseria gonorrhoeaeMolecular Microbiology, 2005
- The N. gonorrhoeae Type IV Pilus Stimulates Mechanosensitive Pathways and Cytoprotection through a pilT-Dependent MechanismPLoS Biology, 2005
- Bacterial Adhesion to Target Cells Enhanced by Shear ForceCell, 2002
- Crystal structure of Pseudomonas aeruginosa PAK pilin suggests a main-chain-dominated mode of receptor bindingJournal of Molecular Biology, 2000
- Bacterial Type II protein export and pilus biogenesis: more than just homologies?Trends in Cell Biology, 1999