CspZ variant–specific interaction with factor H incorporates a metal site to support Lyme borreliae complement evasion, 2024,Brangulis+

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  1. SNT Gatchaman

    SNT Gatchaman Senior Member (Voting Rights) Staff Member

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    CspZ variant–specific interaction with factor H incorporates a metal site to support Lyme borreliae complement evasion
    Kalvis Brangulis; Valerie Sürth; Ashley L. Marcinkiewicz; Inara Akopjana; Andris Kazaks; Janis Bogans; Alisa Huber; Yi-Pin Lin; Peter Kraiczy

    Polymorphic microbial immune evasion proteins dictate the pathogen species-or strain-specific virulence. Metals can impact how microbial proteins confer host–pathogen interactions, but whether this activity can be allelically variable is unclear.

    Here, we investigate the polymorphic CspZ protein of Lyme disease spirochete bacteria to assess the role of metals in protein–protein interaction. CspZ facilitates evasion of the complement system, the first line of immune defense through binding to the complement regulator factor H (FH). By obtaining a high-resolution cocrystal CspZ–FH structure, we identified a zinc coordinating the binding of FH SCR6–7 domains to a Glu65 on a loop from CspZ of Borrelia burgdorferi B31. However, zinc is dispensable for human FH binding for CspZ orthologs with a different loop orientation and/or lacking this glutamate.

    Phylogenetic analysis of all known human FH–binding CspZ variants further grouped the proteins into three unique lineages correlating with loop sequences. This suggests multiple FH-binding mechanisms evolved through Lyme disease spirochete–host interactions. Overall, this multidisciplinary work elucidates how the allelically specific immune evasion role of metals is impacted by microbial protein polymorphisms.


    Link | PDF (Journal of Biological Chemistry) [Open Access]
     
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