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May 1, 20260 citations

Complement inhibition by a unique cluster of immunomodulatory outer surface proteins of Borrelia recurrentis.

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FRFlorian RöttgerdingFRFlavia ReyerEGEva Gerlach

Key Points

  • This research aims to identify and characterize Borrelia recurrentis proteins that aid in immune evasion through complement inhibition.
  • Identified five proteins (ChiA to ChiE) involved in complement targeting and immune interaction.
  • Characterized the structures of ChiA and ChiB using X-ray crystallography and AlphaFold models for ChiC, ChiD, and ChiE.
  • Analyzed the proteins' ability to inhibit complement activation and facilitate serum resistance.
  • ChiA, ChiB, ChiC, ChiD, and ChiE proteins inhibit complement activation and block membrane attack complex formation.
  • ChiB, ChiC, and ChiD enhance serum resistance against immune responses.
  • ChiC and ChiE contain conserved cysteines that form reversible disulfide bridges, affecting their function.

Abstract

Borrelia recurrentis, the agent of louse-borne relapsing fever, causes a poverty-associated, infectious disease of high mortality. Here, we identified and characterized five Complement targeting and Host Interacting proteins, ChiA to ChiE displaying immunomodulatory functions. Almost all Chi homologs inhibit complement activation by direct binding of key components, block membrane attack complex formation, and interact with plasminogen. Borrelia proteins protect susceptible spirochetes from complement-mediated killing and ChiB, ChiC, and ChiD facilitate serum resistance. X-ray structures of ChiA and ChiB, along with AlphaFold models of ChiC, ChiD, and ChiE, reveal a conserved, compact eight-helix fold with a central hydrophobic pocket and a unique S-domain-feature distinct from all known Borrelia proteins. Notably, ChiC and ChiE harbor conserved cysteines forming a reversible disulfide bridge, indicating redox-responsive function. Our findings identify a protein family of functionally related immune evasion factors, advancing our understanding of the underlying mechanisms of complement resistance in this neglected, human pathogenic microorganism.

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Cite This Study

Röttgerding et al. (2026) studied this question.

synapsesocial.com/papers/69f443e8967e944ac5566f4bhttps://doi.org/10.1038/s41467-026-72359-y
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