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Human Dectin-1 deficiency impairs macrophage-mediated defense against phaeohyphomycosis

Authors :
Rebecca A. Drummond
Jigar V. Desai
Amy P. Hsu
Vasileios Oikonomou
Donald C. Vinh
Joshua A. Acklin
Michael S. Abers
Magdalena A. Walkiewicz
Sarah L. Anzick
Muthulekha Swamydas
Simon Vautier
Mukil Natarajan
Andrew J. Oler
Daisuke Yamanaka
Katrin D. Mayer-Barber
Yoichiro Iwakura
David Bianchi
Brian Driscoll
Ken Hauck
Ahnika Kline
Nicholas S.P. Viall
Christa S. Zerbe
Elise M.N. Ferré
Monica M. Schmitt
Tom DiMaggio
Stefania Pittaluga
John A. Butman
Adrian M. Zelazny
Yvonne R. Shea
Cesar A. Arias
Cameron Ashbaugh
Maryam Mahmood
Zelalem Temesgen
Alexander G. Theofiles
Masayuki Nigo
Varsha Moudgal
Karen C. Bloch
Sean G. Kelly
M. Suzanne Whitworth
Ganesh Rao
Cindy J. Whitener
Neema Mafi
Juan Gea-Banacloche
Lawrence C. Kenyon
William R. Miller
Katia Boggian
Andrea Gilbert
Matthew Sincock
Alexandra F. Freeman
John E. Bennett
Rodrigo Hasbun
Constantinos M. Mikelis
Kyung J. Kwon-Chung
Yasmine Belkaid
Gordon D. Brown
Jean K. Lim
Douglas B. Kuhns
Steven M. Holland
Michail S. Lionakis
Source :
The Journal of Clinical Investigation, Vol 132, Iss 22 (2022)
Publication Year :
2022
Publisher :
American Society for Clinical Investigation, 2022.

Abstract

Subcutaneous phaeohyphomycosis typically affects immunocompetent individuals following traumatic inoculation. Severe or disseminated infection can occur in CARD9 deficiency or after transplantation, but the mechanisms protecting against phaeohyphomycosis remain unclear. We evaluated a patient with progressive, refractory Corynespora cassiicola phaeohyphomycosis and found that he carried biallelic deleterious mutations in CLEC7A encoding the CARD9-coupled, β-glucan–binding receptor, Dectin-1. The patient’s PBMCs failed to produce TNF-α and IL-1β in response to β-glucan and/or C. cassiicola. To confirm the cellular and molecular requirements for immunity against C. cassiicola, we developed a mouse model of this infection. Mouse macrophages required Dectin-1 and CARD9 for IL-1β and TNF-α production, which enhanced fungal killing in an interdependent manner. Deficiency of either Dectin-1 or CARD9 was associated with more severe fungal disease, recapitulating the human observation. Because these data implicated impaired Dectin-1 responses in susceptibility to phaeohyphomycosis, we evaluated 17 additional unrelated patients with severe forms of the infection. We found that 12 out of 17 carried deleterious CLEC7A mutations associated with an altered Dectin-1 extracellular C-terminal domain and impaired Dectin-1–dependent cytokine production. Thus, we show that Dectin-1 and CARD9 promote protective TNF-α– and IL-1β–mediated macrophage defense against C. cassiicola. More broadly, we demonstrate that human Dectin-1 deficiency may contribute to susceptibility to severe phaeohyphomycosis by certain dematiaceous fungi.

Details

Language :
English
ISSN :
15588238
Volume :
132
Issue :
22
Database :
Directory of Open Access Journals
Journal :
The Journal of Clinical Investigation
Publication Type :
Academic Journal
Accession number :
edsdoj.71c653dd808145c48e7e7ce5ab2b01ae
Document Type :
article
Full Text :
https://doi.org/10.1172/JCI159348