首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Transforming Growth Factor-β Regulation of Epithelial Tight Junction Proteins Enhances Barrier Function and Blocks Enterohemorrhagic Escherichia coli O157:H7-Induced Increased Permeability
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Transforming Growth Factor-β Regulation of Epithelial Tight Junction Proteins Enhances Barrier Function and Blocks Enterohemorrhagic Escherichia coli O157:H7-Induced Increased Permeability

机译:上皮紧密连接蛋白的转化生长因子-β调节增强屏障功能并阻断大肠埃希菌O157:H7诱导的通透性增加

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摘要

Enterohemorrhagic Escherichia coli O157:H7 (EHEC) is an enteric pathogen that causes potentially fatal symptoms after intimate adhesion, modulation of intestinal epithelial signal transduction, and alteration of epithelial function (eg, barrier disruption). Although the epithelial barrier is critical to gut homeostasis, only a few agents, such as transforming growth factor (TGF)-β, can enhance or protect epithelial barrier function. Our aims were to delineate the mechanism(s) behind TGF-β-induced barrier enhancement and to determine whether TGF-β could prevent EHEC-induced barrier disruption. Using monolayers of the human T84 colonic epithelial cell line, we found that TGF-β induced a significant increase in transepithelial electrical resistance (a measure of paracellular permeability) through activation of ERK MAPK and SMAD signaling pathways and up-regulation of the tight junction protein claudin-1. Additionally, TGF-β pretreatment of epithelia blocked the decrease in transepithelial electrical resistance and the increase in transepithelial passage of [3H]-mannitol caused by EHEC infection. EHEC infection was associated with reduced expression of zonula occludens-1, occludin, and claudin-2 (but not claudin-1 or claudin-4); TGF-β pretreatment prevented these changes. These studies provide insight into EHEC pathogenesis by illustrating the mechanisms underlying TGF-β-induced epithelial barrier enhancement and identifying TGF-β as an agent capable of blocking EHEC-induced increases in epithelial permeability via maintenance of claudin-2, occludin, and zonula occludens-1 levels.
机译:肠出血性大肠杆菌O157:H7(EHEC)是一种肠内病原体,在亲密粘附,肠道上皮信号传导调节和上皮功能改变(例如屏障破坏)后引起潜在的致命症状。尽管上皮屏障对肠道的动态平衡至关重要,但只有少数药物(例如转化生长因子(TGF)-β)可以增强或保护上皮屏障的功能。我们的目的是描述TGF-β诱导的屏障增强背后的机制,并确定TGF-β是否可以预防EHEC诱导的屏障破坏。使用人类T84结肠上皮细胞系的单层细胞,我们发现TGF-β通过激活ERK MAPK和SMAD信号通路并上调紧密连接蛋白而诱导跨上皮电阻的显着增加(细胞旁通透性的量度) claudin-1。另外,TGF-β预处理的上皮可阻止由EHEC感染引起的跨上皮电阻的降低和[ 3 H]-甘露醇的跨上皮通道的增加。 EHEC感染与小带闭合蛋白-1,闭合蛋白和claudin-2(而非claudin-1或claudin-4)的表达降低有关; TGF-β预处理可防止这些变化。这些研究通过阐明TGF-β诱导的上皮屏障增强的潜在机制并鉴定TGF-β作为能够通过维持claudin-2,occludin和zonula咬合蛋白来阻止EHEC诱导的上皮通透性增加的药物,从而提供了对EHEC发病机理的认识。 -1级。

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