SCGB1D2 inhibits growth of Borrelia burgdorferi and affects susceptibility to Lyme disease

Author:

Strausz Satu,Abner ErikORCID,Blacker Grace,Galloway Sarah,Hansen PaigeORCID,Feng Qingying,Lee Brandon T.,Jones Samuel E.ORCID,Haapaniemi Hele,Raak Sten,Nahass George Ronald,Sanders Erin, , , ,Soodla Pilleriin,Võsa UrmoORCID,Esko Tõnu,Sinnott-Armstrong NasaORCID,Weissman Irving L.ORCID,Daly Mark,Aivelo TuomasORCID,Tal Michal CaspiORCID,Ollila Hanna M.

Abstract

AbstractLyme disease is a tick-borne disease caused by bacteria of the genus Borrelia. The host factors that modulate susceptibility for Lyme disease have remained mostly unknown. Using epidemiological and genetic data from FinnGen and Estonian Biobank, we identify two previously known variants and an unknown common missense variant at the gene encoding for Secretoglobin family 1D member 2 (SCGB1D2) protein that increases the susceptibility for Lyme disease. Using live Borrelia burgdorferi (Bb) we find that recombinant reference SCGB1D2 protein inhibits the growth of Bb in vitro more efficiently than the recombinant protein with SCGB1D2 P53L deleterious missense variant. Finally, using an in vivo murine infection model we show that recombinant SCGB1D2 prevents infection by Borrelia in vivo. Together, these data suggest that SCGB1D2 is a host defense factor present in the skin, sweat, and other secretions which protects against Bb infection and opens an exciting therapeutic avenue for Lyme disease.

Funder

Academy of Finland

Suomen Lääketieteen Säätiö

Bay Area Lyme Foundation

Fairbairn family foundation

Publisher

Springer Science and Business Media LLC

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