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簇细胞衍生的白三烯在小肠中迅速引发抗寄生虫免疫,但对抗原生动物免疫不是必需的。

Tuft-Cell-Derived Leukotrienes Drive Rapid Anti-helminth Immunity in the Small Intestine but Are Dispensable for Anti-protist Immunity.

机构信息

Department of Immunology, University of Washington School of Medicine, Seattle, WA 98109, USA.

Division of Rheumatology, Immunology and Allergy, Jeff and Penny Vinik Center for Allergic Disease Research, Brigham and Women's Hospital and Department of Medicine, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Immunity. 2020 Mar 17;52(3):528-541.e7. doi: 10.1016/j.immuni.2020.02.005. Epub 2020 Mar 10.

Abstract

Helminths, allergens, and certain protists induce type 2 immune responses, but the underlying mechanisms of immune activation remain poorly understood. In the small intestine, chemosensing by epithelial tuft cells results in the activation of group 2 innate lymphoid cells (ILC2s), which subsequently drive increased tuft cell frequency. This feedforward circuit is essential for intestinal remodeling and helminth clearance. ILC2 activation requires tuft-cell-derived interleukin-25 (IL-25), but whether additional signals regulate the circuit is unclear. Here, we show that tuft cells secrete cysteinyl leukotrienes (cysLTs) to rapidly activate type 2 immunity following chemosensing of helminth infection. CysLTs cooperate with IL-25 to activate ILC2s, and tuft-cell-specific ablation of leukotriene synthesis attenuates type 2 immunity and delays helminth clearance. Conversely, cysLTs are dispensable for the tuft cell response induced by intestinal protists. Our findings identify an additional tuft cell effector function and suggest context-specific regulation of tuft-ILC2 circuits within the small intestine.

摘要

寄生虫、过敏原和某些原生动物会诱导 2 型免疫反应,但免疫激活的潜在机制仍知之甚少。在小肠中,上皮簇细胞的化学感应导致 2 型固有淋巴细胞(ILC2)的激活,随后驱动簇细胞频率增加。这个前馈回路对于肠道重塑和寄生虫清除至关重要。ILC2 的激活需要簇细胞衍生的白细胞介素 25(IL-25),但不清楚是否有其他信号调节该回路。在这里,我们发现簇细胞分泌半胱氨酰白三烯(cysLTs),在寄生虫感染的化学感应后,可快速激活 2 型免疫。cysLTs 与 IL-25 合作激活 ILC2,簇细胞特异性缺失白三烯合成会减弱 2 型免疫并延迟寄生虫清除。相反,cysLTs 对于肠道原生动物诱导的簇细胞反应是可有可无的。我们的研究结果确定了簇细胞的另一种效应功能,并表明小肠内簇-ILC2 回路存在特定于上下文的调节。

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