在小鼠结肠炎模型中,NFAT5决定肠上皮再生能力和微生物群之间的串扰。

Se Hyeon Park,Dae Hee Cheon,Yu-Mi Kim,Yeji Choi,Yong-Joon Cho,Bong-Ki Hong,Sang-Hyun Cho,Mi-Na Kweon,Hyug Moo Kwon,Eugene B Chang,Donghyun Kim,Wan-Uk Kim
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摘要

高渗和高渗刺激经常对肠道造成挑战。因此,一个有弹性的上皮屏障对于在渗透干扰的情况下维持肠道稳态是必不可少的。NFAT5是一种渗透敏感转录因子,主要在高渗条件下维持细胞稳态。然而,NFAT5在肠细胞稳态中的渗透保护作用尚不清楚。在这里,我们证明了NFAT5对肠上皮细胞(IECs)的存活和增殖至关重要,并且它的缺乏加速了小鼠化学诱导或自发结肠炎。在机制上,NFAT5促进iec的存活和肠道干细胞的更新,从而调节粘液和抗菌化合物(包括RegIII和溶菌酶)的产生,从而塑造肠道微生物组成以预防结肠炎。转录组分析发现HSP70是NFAT5在上皮再生中的关键下游靶点。HSP70的功能丧失和功能获得实验表明,NFAT5通过IEC HSP70减轻实验性结肠炎,保护干细胞免受炎症诱导的损伤并维持屏障功能。总之,我们的研究证明了NFAT5在决定肠道干细胞和微生物群之间的相互作用方面的未知作用,强调了NFAT5- hsp70轴在维持与肠道屏障功能相关的上皮再生、平衡微生物组成以及随后预防结肠炎进展方面的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
NFAT5 dictates crosstalk between intestinal epithelial regenerative capacity and microbiota in murine colitis models.
Hypertonic and hyperosmolar stimuli frequently pose challenges to the intestinal tract. Therefore, a resilient epithelial barrier is essential for maintaining gut homeostasis in the presence of osmotic perturbations. NFAT5, an osmosensitive transcription factor, primarily maintains cellular homeostasis under hypertonic conditions. However, the osmoprotective role of NFAT5 in enterocyte homeostasis is poorly understood. Here, we demonstrate that NFAT5 is critical for the survival and proliferation of intestinal epithelial cells (IECs) and that its deficiency accelerates chemically induced or spontaneous colitis in mice. Mechanistically, NFAT5 promotes the survival of IECs and the renewal of intestinal stem cells, thereby regulating the production of mucus and antimicrobial compounds, including RegIII and lysozyme, which consequently shape the gut microbial composition to prevent colitis. Transcriptome analysis identifies HSP70 as a key downstream target of NFAT5 in epithelial regeneration. Loss- and gain-of-function experiments of HSP70 revealed that NFAT5 mitigates experimental colitis through IEC Hsp70, which protected stem cells from inflammation-induced injury and maintained barrier function. In conclusion, our study demonstrates a previously unknown role for NFAT5 in dictating the crosstalk between intestinal stem cells and the microbiota, underscoring the importance of the NFAT5-HSP70 axis in maintaining epithelial regeneration related to gut barrier function, balancing microbial composition, and subsequently preventing colitis progression.
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