分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

FOSL1 knockdown ameliorates DSS‑induced inflammation and barrier damage in ulcerative colitis via MMP13 downregulation

Lizhuan Ma, Xiujing Zhang, Chao Zhang, Bingxu Hou, Hongtao Zhao

Journal:Experimental and Therapeutic Medicine

IF:2.75

DOI:10.3892/etm.2022.11488

PMID:35978937

Published:2022-07-01

research field:抗生素耐药传染病学微生物学分子致病机制细菌遗传学

Abstract

Ulcerative colitis (UC) is a chronic inflammatory disease of the colon. Fos‑related antigen 1 is highly expressed in mild UC and affects the maintenance and delayed recurrence of inflammatory bowel disease. Therefore the present study aimed to investigate the role of Fos‑like antigen‑1 (FOSL1) in UC. Use of the JASPAR database predicted the possible interaction of FOSL1 and the MMP13 promoter. FOSL1 and MMP13 mRNA and protein expression levels in dextran sodium sulfate (DSS)‑induced HT29 cells and colon tissues of a UC mice model were determined using reverse transcription‑quantitative PCR and western blotting, respectively. MMP13 promoter activity was determined using the dual‑luciferase reporter assay, the relationship between FOSL1 and MMP13 promoter was determined using chromatin immunoprecipitation, inflammatory factor levels were quantified using ELISA, cell monolayer permeability analysis was performed using transepithelial electrical resistance measurements and tight junction protein expression levels were determined by western blotting. After constructing a UC mice model, mice colonic injury was determined with the quantification of colon length, H&E staining and disease activity index. The results demonstrated that FOSL1 and MMP13 were upregulated in DSS‑induced HT29 cells and tissues. FOSL1 was also determined to be bound to the MMP13 promoter region and was demonstrated to upregulate MMP13 expression levels. Furthermore, FOSL1 knockdown inhibited DSS‑induced inflammation and barrier damage in HT29 cells via MMP13 downregulation. FOSL1 knockdown also ameliorated colonic injury, inflammation and barrier damage in the tissues of the UC mice model via MMP13 downregulation. Overall, FOSL1 knockdown was demonstrated to potentially ameliorate DSS‑induced inflammatory injury and protect the intestinal barrier integrity in the UC mice model via MMP13 downregulation.

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