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Updated: Sep 8, 2025

Immuno-fluorescence Assay of Leptospiral Surface-exposed Proteins
Published on: July 1, 2011
Borrelia miyamotoi FbpA and FbpB Are Immunomodulatory Outer Surface Lipoproteins With Distinct Structures and
Charles E Booth1, Alexandra D Powell-Pierce2, Jon T Skare2
1Department of Microbiology and Immunology, Brody School of Medicine, East Carolina University, Greenville, NC, United States.
Abstract:
Pathogens that traffic in the blood of their hosts must employ mechanisms to evade the host innate immune system, including the complement cascade. The Lyme disease spirochete, Borreliella burgdorferi, has evolved numerous outer membrane lipoproteins that interact directly with host proteins. Compared to Lyme disease-associated spirochetes, relatively little is known about how an emerging tick-borne spirochetal pathogen, Borrelia miyamotoi, utilizes surface lipoproteins to interact with a human host. B. burgdorferi expresses the multifunctional lipoprotein, BBK32, that inhibits the classical pathway of complement through interaction with the initiating protease C1r, and also interacts with fibronectin using a separate intrinsically disordered domain. B. miyamotoi encodes two separate bbk32 orthologs denoted fbpA and fbpB; however, the activities of these proteins are unknown. Here, we show that B. miyamotoi FbpA binds human fibronectin in a manner similar to B. burgdorferi BBK32, whereas FbpB does not. FbpA and FbpB both bind human complement C1r and protect a serum-sensitive B. burgdorferi strain from complement-mediated killing, but surprisingly, differ in their ability to recognize activated C1r versus zymogen states of C1r. To better understand the observed differences in C1r recognition and inhibition properties, high-resolution X-ray crystallography structures were solved of the C1r-binding regions of B. miyamotoi FbpA and FbpB at 1.9Å and 2.1Å, respectively. Collectively, these data suggest that FbpA and FbpB have partially overlapping functions but are functionally and structurally distinct. The data presented herein enhances our overall understanding of how bloodborne pathogens interact with fibronectin and modulate the complement system.
Insights
Borrelia miyamotoi lipoproteins FbpA and FbpB bind complement C1r, inhibiting the host immune response. Structural analysis reveals distinct C1r recognition, impacting pathogen survival strategies against complement-mediated killing.
Area of Science:
- Microbiology
- Immunology
- Structural Biology
Background:
- Pathogens evading host immunity, particularly the complement cascade, are crucial for survival.
- Borrelia burgdorferi uses outer membrane lipoproteins like BBK32 to interact with host proteins and evade complement.
- The emerging pathogen Borrelia miyamotoi has unknown mechanisms for host interaction, despite encoding BBK32 orthologs.
Purpose of the Study:
- To investigate the functions of Borrelia miyamotoi lipoproteins FbpA and FbpB in interacting with host fibronectin and complement.
- To elucidate the structural basis for differential recognition of complement C1r by FbpA and FbpB.
- To understand how these lipoproteins contribute to immune evasion strategies of Borrelia miyamotoi.
Main Methods:
- Biochemical assays to assess fibronectin and C1r binding.
- Complement-mediated killing assays using a serum-sensitive Borrelia burgdorferi strain.
- High-resolution X-ray crystallography to determine the structures of FbpA and FbpB C1r-binding regions.
Main Results:
- B. miyamotoi FbpA binds human fibronectin, similar to B. burgdorferi BBK32; FbpB does not.
- Both FbpA and FbpB bind human complement C1r and confer resistance to complement-mediated killing.
- FbpA and FbpB exhibit distinct binding preferences for activated versus zymogen forms of C1r.
- X-ray crystallography revealed distinct structures for the C1r-binding regions of FbpA and FbpB.
Conclusions:
- FbpA and FbpB possess partially overlapping but distinct functions in host protein interaction and complement evasion.
- Structural differences in C1r recognition contribute to the functional divergence of FbpA and FbpB.
- These findings enhance understanding of bloodborne pathogen interactions with fibronectin and complement modulation.
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