细胞外
生物
巨噬细胞
免疫学
免疫系统
细胞内
微生物学
免疫
细胞生物学
炎症
细胞内寄生虫
真菌病原
先天免疫系统
髓样
细胞因子
病菌
细胞免疫
趋化性
隐球菌
骨髓生成
免疫抑制
肺
电池类型
信号转导
肉芽肿
细胞外基质
新生隐球菌
白细胞介素4
作者
Yufan Zheng,Makheni Jean Pierre,Eduard Ansaldo,Hannah E. Dobson,Olena Kamenyeva,Chinaemerem U. Onyishi,Sarah Douglas,Christopher Febres Aldana,Pinar Engin Zerk,Irini Sereti,Jovany J. Betancourt,Kirsten Nielsen,Erin McCaffrey,Eric V. Dang
摘要
Inhaled fungal pathogens often generate granuloma-contained latent infections that can reactivate to cause invasive disease. However, why protective pathways fail to achieve sterilizing immunity in this setting is unclear. Here, we identify type 2 inflammation as a major arm of immunosuppression during latent, granulomatous fungal infection. Using reporter mice, we found that TH2 cells were the dominant source of type 2 cytokines and deletion of IL-4/IL-13, Stat6, or TH2 cells drove fungal clearance. Type 2 signaling acted on monocyte-derived myeloid cells that formed an ARG1+ ring around the granuloma core. STAT6 was required cell intrinsically in this compartment, and its loss reduced lung burden. Contrary to an intracellular-niche model, we found that Cryptococcus was predominantly extracellular in vivo. STAT6 deficiency did not enhance macrophage intracellular killing, but instead antagonized IFNγ-dependent protection against extracellular yeast. These findings identify a spatially organized TH2-STAT6 checkpoint that limits IFNγ-mediated extracellular killing and maintains cryptococcal latency.
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