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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The zinc sensing receptor, ZnR/GPR39, triggers metabotropic calcium signalling in colonocytes and regulates occludin recovery in experimental colitis
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The zinc sensing receptor, ZnR/GPR39, triggers metabotropic calcium signalling in colonocytes and regulates occludin recovery in experimental colitis

机译:锌敏感受体ZnR / GPR39触发结肠细胞中代谢型钙信号传导并调节实验性结肠炎中的闭合蛋白恢复

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摘要

Impaired epithelial barrier function is a hallmark of inflammatory bowel diseases, such as colitis, contributing to diarrhoea and perpetuating inflammation. We show that the zinc sensing receptor, ZnR/GPR39, triggers intracellular Ca2+ signalling in colonocytes thereby inducing occludin expression. Moreover, ZnR/GPR39 is essential for epithelial barrier recovery in the dextran sodium sulfate (DSS) ulcerative colitis model. Loss of ZnR/GPR39 results in increased susceptibility to DSS-induced inflammation, owing to lowexpression of the tight junction protein occludin and impaired epithelial barrier. Recovery of wild-type (WT) mice from the DSS insult was faster than that of ZnR/GPR39 knockout (KO) mice. Enhanced recovery of the epithelial layer and increased crypt regeneration were observed in WT mice compared with ZnR/GPR39KO, suggesting that ZnR/GPR39 is promoting epithelial barrier integrity following DSS insult. Indeed, cell proliferation and apical expression of occludin, following the DSS-induced epithelial erosion, were increased in WT tissue but not in ZnR/GPR39 KO tissue. Importantly, survival following DSS treatment was higher in WT mice compared with ZnR/GPR39 KO mice. Our results support a direct role for ZnR/GPR39 in promoting epithelial renewal and barrier function following DSS treatment, thereby affecting the severity of the disease. We suggest ZnR/GPR39 as a novel therapeutic target that can improve epithelial barrier function in colitis.
机译:上皮屏障功能受损是炎症性肠病(例如结肠炎)的标志,可导致腹泻和永久性炎症。我们表明,锌敏感受体ZnR / GPR39,触发结肠细胞中的细胞内Ca2 +信号传导,从而诱导occludin表达。此外,ZnR / GPR39对于右旋糖酐硫酸钠(DSS)溃疡性结肠炎模型的上皮屏障恢复至关重要。 ZnR / GPR39的丧失导致对DSS诱导的炎症的敏感性增加,这是由于紧密连接蛋白occludin的低表达和受损的上皮屏障所致。从DSS损伤中恢复野生型(WT)小鼠的速度比ZnR / GPR39基因敲除(KO)小鼠的恢复速度更快。与ZnR / GPR39KO相比,在WT小鼠中观察到上皮层的恢复增强和隐窝再生增强,这表明ZnR / GPR39促进了DSS损伤后上皮屏障的完整性。确实,在DSS诱导的上皮侵蚀后,occludin的细胞增殖和顶端表达在WT组织中增加,但在ZnR / GPR39 KO组织中没有增加。重要的是,与ZnR / GPR39 KO小鼠相比,WT小鼠的DSS治疗后的存活率更高。我们的结果支持ZnR / GPR39在DSS治疗后促进上皮更新和屏障功能的直接作用,从而影响疾病的严重性。我们建议Z​​nR / GPR39作为一种新型治疗靶标,可以改善结肠炎中的上皮屏障功能。

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