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Updated: Apr 23, 2026

Author Spotlight: Advancing Syphilis Research — Innovations in Treponema pallidum Cultivation and Genetic Engineering
Published on: January 24, 2025
Antigenic variation of TprK facilitates development of secondary syphilis
Tara B Reid1, Barbara J Molini2, Mark C Fernandez2
1Interdisciplinary Graduate Program in Pathobiology, Department of Global Health, University of Washington, Seattle, Washington, USA.
Abstract:
Although primary syphilis lesions heal spontaneously, the infection is chronic, with subsequent clinical stages. Healing of the primary chancre occurs as antibodies against outer membrane antigens facilitate opsonophagocytosis of the bacteria by activated macrophages. TprK is an outer membrane protein that undergoes antigenic variation at 7 variable regions, and variants are selected by immune pressure. We hypothesized that individual TprK variants escape immune clearance and seed new disseminated lesions to cause secondary syphilis. As in human syphilis, infected rabbits may develop disseminated secondary skin lesions. This study explores the nature of secondary syphilis, specifically, the contribution of antigenic variation to the development of secondary lesions. Our data from the rabbit model show that the odds of secondary lesions containing predominately TprK variant treponemes is 3.3 times higher than the odds of finding TprK variants in disseminated primary lesions (odds ratio [OR] = 3.3 [95% confidence interval {CI}, 0.98 to 11.0]; P = 0.055) and that 96% of TprK variant secondary lesions are likely seeded by single treponemes. Analysis of antibody responses demonstrates significantly higher antibody titers to tprK variable region sequences found in the inoculum compared to reactivity to tprK variant sequences found in newly arising secondary lesions. This suggests that tprK variants escape the initial immune response raised against the V regions expressed in the inoculum. These data further support a role for TprK in immune evasion and suggest that the ability of TprK variants to persist despite a robust immune response is instrumental in the development of later stages of syphilis.
Insights
Treponema pallidum outer membrane protein TprK undergoes antigenic variation, enabling immune evasion. This variation is crucial for the development of secondary syphilis lesions by allowing bacteria to persist and spread.
Area of Science:
- Immunology
- Microbiology
- Infectious Diseases
Background:
- Syphilis is a chronic infection with distinct clinical stages.
- Outer membrane antigens, like TprK, are involved in bacterial immune evasion.
- Antigenic variation of TprK is hypothesized to drive secondary syphilis development.
Purpose of the Study:
- To investigate the role of TprK antigenic variation in the pathogenesis of secondary syphilis.
- To determine if TprK variants contribute to the seeding of new lesions in secondary syphilis.
Main Methods:
- Utilized a rabbit model of syphilis infection.
- Analyzed the prevalence of TprK variants in primary and secondary lesions.
- Measured antibody responses against different TprK variable regions.
Main Results:
- Secondary lesions were significantly more likely to contain predominantly TprK variant treponemes compared to disseminated primary lesions.
- A high percentage of secondary lesions were seeded by single treponemes.
- Antibody titers were higher against inoculum TprK sequences than against sequences in newly arising secondary lesions, indicating immune escape.
Conclusions:
- TprK antigenic variation facilitates immune evasion by Treponema pallidum.
- TprK variants play a critical role in the development and persistence of secondary syphilis lesions.
- Understanding TprK's role is key to developing strategies against later-stage syphilis.

