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上皮内源性锌传感器通过调节簇状细胞谱系来控制与肠道微生物的免疫稳态。

Epithelium intrinsic zinc sensor controls immune homeostasis with gut microbes via regulation of Tuft cell lineage.

作者信息

Yunker Rebecca, Han Geongoo, Vasquez Jorhenis, Baldaro Kellie, Zhang Li, Lee Sanghyun, Vaishnava Shipra

机构信息

Molecular Microbiology and Immunology Department, Brown University, RI, 02019, USA.

出版信息

bioRxiv. 2025 May 12:2025.05.07.652635. doi: 10.1101/2025.05.07.652635.

Abstract

Zinc is an essential micronutrient crucial for cell proliferation, differentiation, and apoptosis, yet its precise role in the constantly renewing intestinal epithelium remains unclear. We generated mice lacking the Zn-dependent transcription factor Metal-responsive Transcription Factor 1(MTF1) in intestinal epithelial cells. MTF1 mice exhibited altered metal homeostasis and acute susceptibility to Zn supplementation. Transcriptional and cellular analyses revealed increased inflammatory immune responses to microbes in MTF1 mice. Mechanistically MTF1 deletion resulted in the loss of Tuft cell lineages compromising barrier function against commensal microbes and pathogens. Ex vivo experiments demonstrated that at a cellular level, Zn treatment skewed the cellular composition from proliferating to differentiated cells. Specifically, we show that Zn sensing via MTF1 is required for IL-13 dependent induction of Tuft cells. Our findings underscore critical role of Zn in maintaining intestinal immune homeostasis through differentiation of specialized cell lineages, highlighting importance nutrient sensing in the constantly remodeling epithelial barrier.

摘要

锌是一种必需的微量营养素,对细胞增殖、分化和凋亡至关重要,但其在不断更新的肠道上皮细胞中的精确作用仍不清楚。我们构建了肠道上皮细胞中缺乏锌依赖性转录因子金属反应转录因子1(MTF1)的小鼠。MTF1小鼠表现出金属稳态改变以及对补充锌的急性易感性。转录和细胞分析显示,MTF1小鼠对微生物的炎性免疫反应增强。从机制上讲,MTF1的缺失导致簇状细胞谱系丧失,损害了对共生微生物和病原体的屏障功能。体外实验表明,在细胞水平上,锌处理使细胞组成从增殖细胞偏向分化细胞。具体而言,我们发现通过MTF1感知锌是白细胞介素-13依赖性诱导簇状细胞所必需的。我们的研究结果强调了锌在通过特定细胞谱系分化维持肠道免疫稳态中的关键作用,突出了在不断重塑的上皮屏障中营养感知的重要性。

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