CARD9-Dependent Neutrophil Recruitment Protects against Fungal Invasion of the Central Nervous System

Candida is the most common human fungal pathogen and causes systemic infections that require neutrophils for effective host defense. Humans deficient in the C-type lectin pathway adaptor protein CARD9 develop spontaneous fungal disease that targets the central nervous system (CNS). However, how CARD...

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Veröffentlicht in:PLoS pathogens 2015-12, Vol.11 (12), p.e1005293
Hauptverfasser: Drummond, Rebecca A, Collar, Amanda L, Swamydas, Muthulekha, Rodriguez, Carlos A, Lim, Jean K, Mendez, Laura M, Fink, Danielle L, Hsu, Amy P, Zhai, Bing, Karauzum, Hatice, Mikelis, Constantinos M, Rose, Stacey R, Ferre, Elise M N, Yockey, Lynne, Lemberg, Kimberly, Kuehn, Hye Sun, Rosenzweig, Sergio D, Lin, Xin, Chittiboina, Prashant, Datta, Sandip K, Belhorn, Thomas H, Weimer, Eric T, Hernandez, Michelle L, Hohl, Tobias M, Kuhns, Douglas B, Lionakis, Michail S
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Sprache:eng
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Zusammenfassung:Candida is the most common human fungal pathogen and causes systemic infections that require neutrophils for effective host defense. Humans deficient in the C-type lectin pathway adaptor protein CARD9 develop spontaneous fungal disease that targets the central nervous system (CNS). However, how CARD9 promotes protective antifungal immunity in the CNS remains unclear. Here, we show that a patient with CARD9 deficiency had impaired neutrophil accumulation and induction of neutrophil-recruiting CXC chemokines in the cerebrospinal fluid despite uncontrolled CNS Candida infection. We phenocopied the human susceptibility in Card9-/- mice, which develop uncontrolled brain candidiasis with diminished neutrophil accumulation. The induction of neutrophil-recruiting CXC chemokines is significantly impaired in infected Card9-/- brains, from both myeloid and resident glial cellular sources, whereas cell-intrinsic neutrophil chemotaxis is Card9-independent. Taken together, our data highlight the critical role of CARD9-dependent neutrophil trafficking into the CNS and provide novel insight into the CNS fungal susceptibility of CARD9-deficient humans.
ISSN:1553-7374
1553-7366
1553-7374
DOI:10.1371/journal.ppat.1005293