紧密连接
封堵器
克洛丹
炎症性肠病
发病机制
肠道通透性
炎症
转录组
细胞生物学
免疫学
肠粘膜
癌症研究
生物
化学
势垒函数
疾病
调节器
医学
免疫系统
结肠炎
膜蛋白
细胞结
克罗恩病
作者
Jiawei Zhao,Jianjun Zou,Chen Zhou,Yue Wang,Yi Liu,Yanqing Zhou,Yuxiang Wang,Xinyu Zhang,Huishu Yang,Hongjie Yin,Dongsheng Bai,Yue Zhao,Na Lu
出处
期刊:PubMed
[National Institutes of Health]
日期:2026-02-27
卷期号:: e21681-e21681
标识
DOI:10.1002/advs.202521681
摘要
Inflammatory bowel disease (IBD) is a chronic and relapsing inflammatory disorder of the gastrointestinal tract. This disease is characterized by a steadily increasing global incidence. Multiple susceptibility genes are implicated in IBD pathogenesis. However, the molecular mechanisms linking epithelial barrier dysfunction to disease progression remain poorly understood. This study performs an integrative analysis of public bulk RNA-seq and single-cell transcriptomic datasets. Experimental validation is conducted using clinical samples. Analyses reveal that vacuole membrane protein 1 (VMP1) is significantly downregulated in IBD. This reduced expression correlates with disease severity. Functional studies demonstrate that VMP1 deficiency in intestinal epithelial cells disrupts tight junction integrity. This loss increases epithelial permeability and exacerbates intestinal inflammation. Mechanistically, VMP1 facilitates the recruitment of CORO1C to late endosomes. This recruitment promotes Retromer-mediated recycling of the tight junction protein Occludin to the plasma membrane. Impairment of this pathway shifts Occludin trafficking toward ESCRT-dependent microautophagic degradation. This shift results in the sustained loss of tight junctions. These findings identify VMP1 as a previously unrecognized regulator of epithelial tight junction recycling and barrier homeostasis. This discovery provides new mechanistic insights into IBD pathogenesis and highlights a promising therapeutic avenue for restoring intestinal barrier function.
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