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Retracted : The promoting effect of MMP13 on mediating the development of HFLS‐RA by the target of miR‐19a through IL‐17 signaling pathway
Author(s) -
Su Jiang,
Zhang Jing,
Zhu Jing,
Liu Yi
Publication year - 2020
Publication title -
journal of cellular biochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.028
H-Index - 165
eISSN - 1097-4644
pISSN - 0730-2312
DOI - 10.1002/jcb.29609
Subject(s) - microrna , luciferase , kegg , downregulation and upregulation , signal transduction , transfection , messenger rna , biology , cancer research , microbiology and biotechnology , cell culture , gene , gene expression , genetics , transcriptome
By investigating the expression profiles of miR‐19a and metalloproteinases ( MMP13) in human fibroblast‐like synoviocytes‐rheumatoid arthritis (HFLS‐RA) and HFL cells lines, this study intends to confirm the directly target connection between them and reveal the effect of suppressing MMP13 on HLFS‐RA migration, invasion and apoptosis. After screening the abnormal expressed messenger RNAs and microRNAs in synovial tissues of patients with RA, the underlying pathway was determined by Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis. The HFLS‐RA cell line was transfected for the following experiments with pcDNA3.1(+) served as vector. The directly target association between miR‐19a and MMP13 was confirmed by Luciferase reporter assay. Microarray analysis suggested that MMP13 was upregulated while miR‐19a was downregulated in HFLS of RA tissues compared with the healthy control group. MMP13 was related to many proteins in protein‐protein interaction network, which might be the main influencing factor of RA. KEGG pathway analysis identified that interleukin (IL)‐17 pathway was activated in the regulation of MMP13 in the development of RA. Through observing the alteration of luciferase activity, miR‐19a could indeed bind to the 3′UTR of the downstream of MMP13 , the target association was then confirmed. The proliferation and invasion of HFLS‐RA were promoted by overexpressing MMP13 protein. miR‐19a could function as a suppressor of MMP13 and thereby retard the severity of RA. The results showed that miR‐19a could regulate the expression of MMP13 in HFLS‐RA by mediating the proliferation and invasion of HFLS‐RA through IL‐17 signaling pathway, thereby participating in the degradation of chondrocytes in the progression of RA.