A32 cathelicidin 在枸橼酸杆菌诱导的结肠炎过程中调节鹅口疮细胞粘液分泌

E. R. Cobo, G. Blyth, F. Fiorani, P. Lahiri, A. Herik, A. Dufour, K. Chadee
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引用次数: 0

摘要

摘要 背景 结肠鹅口疮细胞通过分泌 Muc2 粘蛋白和特异性蛋白,对物理性夹持和驱逐入侵的肠道病原体至关重要。因此,Muc2-/-雌雄同窝鼠对附着/排出的棒状柠檬酸杆菌定植表现出更高的易感性也就不足为奇了。结肠上皮细胞也会分泌小的猫肝素肽,它可能会与鹅口疮细胞发生密切的相互作用,并被推测积聚在无菌的内粘液层中,作为一种简单的抗菌肽防御。目的 确定在鼠伤寒杆菌诱发结肠炎期间,猫肝菌素对鹅口疮细胞粘蛋白分泌的影响以及对粘液屏障防御的影响。方法 我们利用猫蒜素缺陷(Camp-/-)小鼠、小鼠结肠组织和人类结肠 LS174T 类鹅口疮上皮细胞来阐明猫蒜素调节鹅口疮细胞分泌的机制。结果 营-/-仔鼠感染鼠疫杆菌后,粪便脱落和上皮定植增加。在鼠疫杆菌感染高峰期(7 dpi),Camp-/-雏鼠表现出粘蛋白层缺乏,阿尔新蓝/PAS填充的鹅口疮细胞较少,岩藻糖(UEA-1+)和N-乙酰葡糖胺(WGA+)糖蛋白减少。通过透射电子显微镜(TEM)观察,Camp-/-结肠中的鹅口疮细胞在鼠疫杆菌感染期间肿胀并保留了大量粘液颗粒。被鼠疫杆菌感染的 Camp-/- 幼体显示活性氧(ROS)生成受损,转录组分析显示 ROS 生物合成减少,ROS 负调控因子增加。在产生粘蛋白的 LS174T 结肠上皮细胞中,人 cathelicidin LL-37 通过 ROS 依赖性机制迅速诱导了与上皮细胞相关的 TFF3 和 RELMβ 的分泌。结论 这些研究结果表明,缺乏猫黏菌素(Camp-/-)的小鼠更容易受到鼠疫杆菌的定植,这是因为小鼠的上睑腺细胞黏液和黏蛋白相关蛋白的分泌缺陷是通过 ROS 依赖性机制引起的。重要的是,cathelicidin能调节粘液分泌,揭示了这种肽对结肠粘液屏障的非杀微生物作用,它具有平衡特性,在将管腔微生物群排除上皮之外以清除细菌感染和恢复肠道平衡方面至关重要。资助机构 NSERC
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A32 CATHELICIDIN REGULATES GOBLET CELL MUCUS SECRETION DURING CITROBACTER RODENTIUM-INDUCED COLITIS
Abstract Background Colonic goblet cells by secreting Muc2 mucin and specific proteins is critical for physically entrapping and expelling invading enteropathogens. Thus, is not surprising that Muc2-/- littermates exhibit increased susceptibility to attaching/effacing Citrobacter rodentium colonization. The colonic epithelium also secretes small cathelicidin peptide, which potentially interacts intimately with goblet cells and was presumed to accumulate within the sterile inner mucus layer as a simple antimicrobial peptide defense. Aims To determine the effects of cathelicidin on mucin secretion in goblet cells during C. rodentium-induced colitis and the impact on the mucus barrier defense. Methods We used cathelicidin-deficient (Camp-/-) mice, mouse colonoids and human colonic LS174T like-goblet epithelial cells to elucidate the mechanisms by which cathelicidin regulates goblet cell secretions. Results Camp -/- littermates infected with C. rodentium displayed increased fecal shedding and epithelial colonization. Camp-/- littermates at the peak of C. rodentium infection (7 dpi) showed a deficient mucin layer with fewer Alcian blue/PAS filled goblet cells and a reduction in fucose (UEA-1+) and N-acetylglucosamine (WGA+) glycoproteins. By transmission electron microscopy (TEM), goblet cells in Camp-/- colons were swollen and retained a large number of mucus granules during C. rodentium infection. C. rodentium infected Camp-/- littermates showed impaired reactive oxygen species (ROS) production and a transcriptomic profiling associated with decreased ROS biosynthesis and an increase in ROS negative regulators. In mucin producing LS174T colonic epithelial cells, human cathelicidin LL-37 promptly induced the secretion of goblet cell-associated TFF3 and RELMβ, via a ROS-dependent mechanism. Conclusions These findings revealed that mice lacking cathelicidin (Camp-/-) were more susceptible to C. rodentium colonization caused by defective goblet cell mucus and mucin-associated protein secretion via a ROS-dependent mechanism. Importantly, cathelicidin regulated mucus secretion revealing a non microbicidal action of this peptide with homeostatic properties on the colonic mucus barrier, critical in excluding luminal microbiota away from the epithelia to clear bacterial infections and restore gut homeostasis. Funding Agencies NSERC
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