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Updated: Oct 14, 2025

Humanized Mouse Model to Study Bacterial Infections Targeting the Microvasculature
Published on: April 1, 2014
The minor pilin PilV provides a conserved adhesion site throughout the antigenically variable meningococcal type IV
Jean-Philippe Barnier1,2,3, Julie Meyer1,2, Subramania Kolappan4
1Faculté de Médecine, Université de Paris, Paris 75006, France.
Abstract:
Neisseria meningitidis utilizes type IV pili (T4P) to adhere to and colonize host endothelial cells, a process at the heart of meningococcal invasive diseases leading to meningitis and sepsis. T4P are polymers of an antigenically variable major pilin building block, PilE, plus several core minor pilins that initiate pilus assembly and are thought to be located at the pilus tip. Adhesion of N. meningitidis to human endothelial cells requires both PilE and a conserved noncore minor pilin PilV, but the localization of PilV and its precise role in this process remains to be clarified. Here, we show that both PilE and PilV promote adhesion to endothelial vessels in vivo. The substantial adhesion defect observed for pilV mutants suggests it is the main adhesin. Consistent with this observation, superresolution microscopy showed the abundant distribution of PilV throughout the pilus. We determined the crystal structure of PilV and modeled it within the pilus filament. The small size of PilV causes it to be recessed relative to adjacent PilE subunits, which are dominated by a prominent hypervariable loop. Nonetheless, we identified a conserved surface-exposed adhesive loop on PilV by alanine scanning mutagenesis. Critically, antibodies directed against PilV inhibit N. meningitidis colonization of human skin grafts. These findings explain how N. meningitidis T4P undergo antigenic variation to evade the humoral immune response while maintaining their adhesive function and establish the potential of this highly conserved minor pilin as a vaccine and therapeutic target for the prevention and treatment of N. meningitidis infections.
Insights
Neisseria meningitidis uses type IV pili (T4P) for adhesion. The minor pilin PilV is the main adhesin, crucial for colonization and a potential target for vaccines against meningitis and sepsis.
Area of Science:
- Microbiology
- Structural Biology
- Immunology
Background:
- Neisseria meningitidis utilizes type IV pili (T4P) for host cell adhesion, a key step in invasive diseases like meningitis and sepsis.
- T4P are polymers of PilE major pilin and minor pilins; the role and localization of the minor pilin PilV are not fully understood.
Purpose of the Study:
- To elucidate the role and localization of PilV in N. meningitidis adhesion to endothelial cells.
- To identify the adhesive properties of PilV and its potential as a therapeutic target.
Main Methods:
- In vivo adhesion assays using PilV mutants.
- Superresolution microscopy to determine PilV localization.
- Crystal structure determination of PilV.
- Alanine scanning mutagenesis to identify adhesive regions.
- Inhibition assays using anti-PilV antibodies on human skin grafts.
Main Results:
- Both PilE and PilV promote adhesion; PilV is identified as the primary adhesin due to significant defects in pilV mutants.
- Superresolution microscopy revealed abundant PilV distribution throughout the T4P filament.
- A conserved, surface-exposed adhesive loop on PilV was identified.
- Antibodies targeting PilV effectively inhibited N. meningitidis colonization of human skin grafts.
Conclusions:
- PilV is the main adhesin of N. meningitidis T4P, localized throughout the pilus.
- PilV's conserved adhesive loop provides a target for therapeutic intervention.
- PilV represents a promising vaccine and therapeutic target for preventing and treating N. meningitidis infections, despite T4P antigenic variation.
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