Liu Feng-Hua, Li Shan-Shan, Li Xiao-Xi, Wang Shuai, Li Mao-Gang, Guan Li, Luan Tian-Gang, Liu Zhi-Gang, Liu Zhan-Ju, Yang Ping-Chang
The Department of Gastroenterology, The Shanghai Tenth People's Hospital of Tongji University, Shanghai 200072, China.
The Research Center of Allergy & Immunology, Shenzhen University School of Medicine, Shenzhen 518060, China.
Oncotarget. 2017 May 8;8(35):58781-58789. doi: 10.18632/oncotarget.17692. eCollection 2017 Aug 29.
Intestinal epithelial barrier dysfunction and vitamin D (VitD)-deficiency play a critical role in a large number of diseases. The histone deacetylases (HDAC) are associated with a large number of immune diseases. This study tests a hypothesis that the interaction between VitD and HDAC is associated with the regulation of epithelial barrier functions. In this study, human intestinal epithelial cell line, T84 cells, was cultured into monolayers to be used as a model to test the epithelial barrier functions. We observed that in a VitD-deficient environment, the T84 monolayer barrier function was compromised. Exposure to calcitriol (the active form of VitD3) in the culture increased the expression of VitD receptor (VDR) in T84 cells. In a VitD-sufficient environment, VDR formed a complex with histone deacetylase-11 (HDAC11); the complex was markedly decreased in a VitD-deficient environment. We also observed that significantly more binding of HDAC11 to the promoter of the tight junction proteins inhibit the gene transcription activities of these loci in the VitD-deficient environment, which were abolished by the presence of calcitriol in the culture. In conclusion, the interaction between VDR and HDAC11 plays a crucial role in the maintenance of the epithelial barrier integrity.
肠上皮屏障功能障碍和维生素D(VitD)缺乏在大量疾病中起关键作用。组蛋白脱乙酰酶(HDAC)与大量免疫疾病相关。本研究检验了一个假说,即VitD与HDAC之间的相互作用与上皮屏障功能的调节有关。在本研究中,将人肠上皮细胞系T84细胞培养成单层,用作测试上皮屏障功能的模型。我们观察到,在VitD缺乏的环境中,T84单层屏障功能受损。在培养物中暴露于骨化三醇(VitD3的活性形式)可增加T84细胞中维生素D受体(VDR)的表达。在VitD充足的环境中,VDR与组蛋白脱乙酰酶11(HDAC11)形成复合物;在VitD缺乏的环境中,该复合物明显减少。我们还观察到,在VitD缺乏的环境中,HDAC11与紧密连接蛋白启动子的结合显著增加,抑制了这些位点的基因转录活性,而培养物中骨化三醇的存在消除了这种抑制作用。总之,VDR与HDAC11之间的相互作用在维持上皮屏障完整性方面起着关键作用。