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Published on: September 1, 2013
Borrelia miyamotoi in vivo antigenic variation demonstrated by serotype reisolations from infected mice
Brittany A Armstrong1, Kevin S Brandt1, Robert D Gilmore1
1Bacterial Diseases Branch, Division of Vector Borne Diseases, National Center for Emerging and Zoonotic Infectious Diseases, Centers for Disease Control and Prevention, Fort Collins, Colorado, USA.
Abstract:
Relapsing fever Borrelia (RFB) employs antigenic variation to alter its surface protein structure in response to host immune pressure. This process occurs by the single translocation of archived variable major protein (Vmp) pseudogenes into a vmp expression locus. Borrelia miyamotoi, phylogenetically grouped with RFB, has the genetic makeup for antigenic variation, but it has not been determined whether B. miyamotoi can create new variant serotypes in vivo. We inoculated mice with a non-clonal parental B. miyamotoi CT13-2396 strain with a known Vmp majority serotype with spirochete isolation at various days post-infection. The vmp that determined the reisolated variant serotype was identified by PCR of the expression locus followed by DNA sequencing of the amplified product. For each mouse reisolate, new variants replaced the parent majority serotype. Moreover, some mice produced additional variant reisolates days apart, indicative of the presentation seen in relapsing fever infections. Infection of mice with a clonal population resulted in the elimination of the inoculated serotype and isolation of new variants. Mouse serum obtained following infection revealed IgM antibodies reactive to the parent Vmp serotype, suggesting that the immune response eliminated or greatly reduced the majority population. These results demonstrated that B. miyamotoi reisolated from infected mice exhibited serotype populations differing from the inoculated strain, indicating the spirochetes underwent antigenic variation to evade the host's immune response. However, whether the observed variation occurred by way of outgrowth of minority populations or by translocation of archived pseudogenes to the expression locus creating new variants awaits further study.
Insights
Borrelia miyamotoi, a relapsing fever bacteria, can change its surface proteins to evade the host immune response. This study shows B. miyamotoi creates new serotypes in vivo, similar to relapsing fever Borrelia.
Area of Science:
- Microbiology
- Immunology
- Genetics
Background:
- Relapsing fever Borrelia (RFB) utilizes antigenic variation for immune evasion by translocating variable major protein (Vmp) pseudogenes.
- Borrelia miyamotoi shares genetic capacity for antigenic variation with RFB, but in vivo serotype switching has not been confirmed.
Purpose of the Study:
- To determine if Borrelia miyamotoi can generate new serotypes in vivo through antigenic variation.
- To investigate the mechanism of serotype switching in B. miyamotoi during host infection.
Main Methods:
- Mice were inoculated with a parental B. miyamotoi strain, and spirochetes were isolated at various time points.
- PCR and DNA sequencing of the vmp expression locus were used to identify the serotype of reisolated variants.
- Mouse serum was analyzed for IgM antibodies against the parent Vmp serotype.
Main Results:
- Reisolated B. miyamotoi variants exhibited different serotypes than the parent strain, indicating antigenic variation.
- Some mice produced multiple distinct variants over time, mimicking relapsing fever infections.
- Infection with a clonal population led to the elimination of the original serotype and isolation of new variants.
Conclusions:
- Borrelia miyamotoi demonstrates antigenic variation in vivo, producing new serotypes to evade the host immune response.
- The host's immune system, specifically IgM antibodies, likely targets the dominant serotype, driving variation.
- Further research is needed to elucidate whether variation occurs through outgrowth of minor populations or Vmp pseudogene translocation.

