生物
白色念珠菌
转录因子
白色体
免疫
防御素
微生物学
调解人
下调和上调
免疫学
基因
免疫系统
细胞生物学
抗菌剂
遗传学
作者
Tiffany C. Taylor,Bianca M. Coleman,S. Arunkumar,Ipsita Dey,John T. Dillon,Nicole O. Ponde,Amanda C. Poholek,Daniella M. Schwartz,Mandy J. McGeachy,Heather R. Conti,Sarah L. Gaffen
标识
DOI:10.1016/j.chom.2023.08.016
摘要
Fungal infections are a global threat; yet, there are no licensed vaccines to any fungal pathogens. Th17 cells mediate immunity to Candida albicans, particularly oropharyngeal candidiasis (OPC), but essential downstream mechanisms remain unclear. In the murine model of OPC, IκBζ (Nfkbiz, a non-canonical NF-κB transcription factor) was upregulated in an interleukin (IL)-17-dependent manner and was essential to prevent candidiasis. Deletion of Nfkbiz rendered mice highly susceptible to OPC. IκBζ was dispensable in hematopoietic cells and acted partially in the suprabasal oral epithelium to control OPC. One prominent IκBζ-dependent gene target was β-defensin 3 (BD3) (Defb3), an essential antimicrobial peptide. Human oral epithelial cells required IκBζ for IL-17-mediated induction of BD2 (DEFB4A, human ortholog of mouse Defb3) through binding to the DEFB4A promoter. Unexpectedly, IκBζ regulated the transcription factor Egr3, which was essential for C. albicans induction of BD2/DEFB4A. Accordingly, IκBζ and Egr3 comprise an antifungal signaling hub mediating mucosal defense against oral candidiasis.
科研通智能强力驱动
Strongly Powered by AbleSci AI