DOI: 10.1128/iai.00157-26 ISSN: 0019-9567
Innate immune recognition of
Debaryomyces hansenii
requires Dectin-1-Card9 signaling
Kevin P. Newhall, Sarah K. McNeer, Scott T. Espenschied, Elora G. Dolan, Julie Y. Zhou, Deborah A. Hogan, Thaddeus S. Stappenbeck ABSTRACT
Innate immune signaling plays a key role in host response to infection, yet the pattern recognition receptors that detect non-model gut-associated yeasts remain poorly defined. Here, we investigated macrophage sensing of
Debaryomyces hansenii
, a food-derived yeast that we found to be enriched within intestinal ulcers of Crohn disease (CD) patients. Using a cell surface receptor antibody screen of bone marrow-derived macrophages infected with a CD patient isolate of
D. hansenii
, we showed that
D. hansenii
-induced macrophage activation characterized by increased expression of co-stimulatory molecules, MHC-II, and pattern recognition receptors, including the C-type lectin receptor Dectin-1. Antibody blockade experiments showed both Dectin-1 and complement receptor 3 subunit CD11b were required for phagocytosis of
D. hansenii
, while Dectin-1 was uniquely required for production of the pro-inflammatory cytokine tumor necrosis factor (Tnf). CRISPR-Cas9-mediated deletion of Dectin-1 phenocopied antibody neutralization effects on phagocytosis. Furthermore, deletion of Dectin-1 or its downstream signaling adaptor molecule Card9 resulted in reduced Tnf secretion in response to
D. hansenii
. Dectin-1-mediated uptake of
D. hansenii
was observed in primary bone marrow-derived macrophage and dendritic cells, as well as across the spectrum of macrophage polarization states. Together, these findings define the role of Dectin-1-Card9 signaling axis in innate immune cell sensing of
D. hansenii
. These findings support the emerging relevance of innate immune recognition of a yeast in Crohn disease pathogenesis.