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  4. CX3CL1 promotes MMP-3 production via the CX3CR1, c-Raf, MEK, ERK, and NF-ΚB signaling pathway in osteoarthritis synovial fibroblasts
 
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CX3CL1 promotes MMP-3 production via the CX3CR1, c-Raf, MEK, ERK, and NF-ΚB signaling pathway in osteoarthritis synovial fibroblasts

Journal
Arthritis Research and Therapy
Journal Volume
19
Journal Issue
1
Date Issued
2017
Author(s)
Hou S.-M.
CHUN-HAN HOU  
Liu J.-F.
DOI
10.1186/s13075-017-1487-6
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85038897330&doi=10.1186%2fs13075-017-1487-6&partnerID=40&md5=e1d8269ea1017798ca55f3fa4c258105
https://scholars.lib.ntu.edu.tw/handle/123456789/456353
Abstract
Background: Osteoarthritis (OA) is a degenerative joint disease that affects the cartilage, synovium, and subchondral bone and is the leading cause of disability in older populations. Specific diagnostic biomarkers are lacking; hence, treatment options for OA are limited. Synovial inflammation is very common in OA joints and has been associated with both OA's symptoms and pathogenesis. Confirming the role of the synovium in OA pathogenesis is a promising strategy for mitigating the symptoms and progression of OA. CX3CL1 is the only member of the CX3C class of chemokines that combines the properties of chemoattractants and adhesion molecules. CX3CL1 levels in the synovium and serum were both discovered to be positively associated with OA pathogenesis. CX3CL1 and its receptor CX3CR1 belong to a family of G protein-coupled receptors. Matrix metalloproteinases (MMPs), which are responsible for matrix degradation, play a crucial role in OA progression. The relationship between CX3CL1 and MMPs in the pathophysiology of OA is still unclear. Methods: CX3CL1-induced MMP-3 production was assessed with quantitative real-time PCR and ELISA. The mechanisms of action of CX3CL1 in different signaling pathways were studied using western blot analysis, quantitative real-time PCR and ELISA. Neutralization antibodies of integrin were achieved to block the CX3CR1 signaling pathway. Luciferase assays were used to study NF-ΚB promoter activity. Results: We investigated the signaling pathway involved in CX3CL1-induced MMP-3 production in osteoarthritis synovial fibroblasts (OASFs). CX3CL1 was found to induce MMP-3 production in a concentration-dependent and time-dependent manner. Using pharmacological inhibitors and CX3CR1 small interfering RNA to block CX3CR1 revealed that the CX3CR1 receptor was involved in the CX3CL1-mediated upregulation of MMP-3. CX3CL1-mediated MMP-3 production was attenuated by c-Raf inhibitors (GW5074) and MEK/ERK inhibitors (PD98059 and U0126). The OASFs were stimulated using CX3CL1-activated p65 phosphorylation. Conclusions: Our results demonstrate that CX3CL1 activates c-Raf, MEK, ERK, and NF-ΚB on the MMP-3 promoter through CX3CR1, thus contributing to cartilage destruction during OA. ? 2017 The Author(s).
SDGs

[SDGs]SDG3

Other Subjects
1,4 diamino 1,4 bis(2 aminophenylthio) 2,3 dicyanobutadiene; 2 (2 amino 3 methoxyphenyl)chromone; 3 (3,5 dibromo 4 hydroxybenzylidene) 1,3 dihydro 5 iodo 2 indolone; chemokine receptor CX3CR1; fractalkine; immunoglobulin enhancer binding protein; integrin; mitogen activated protein kinase; Raf protein; small interfering RNA; stromelysin; synaptotagmin I; chemokine receptor CX3CR1; CX3CL1 protein, human; CX3CR1 protein, human; fractalkine; immunoglobulin enhancer binding protein; MMP3 protein, human; Raf protein; Raf1 protein, human; stromelysin; Article; cell stimulation; clinical article; controlled study; enzyme linked immunosorbent assay; enzyme synthesis; fibroblast; human; human cell; luciferase assay; osteoarthritis; pathogenesis; protein phosphorylation; quantitative analysis; real time polymerase chain reaction; signal transduction; synoviocyte; upregulation; Western blotting; biosynthesis; fibroblast; MAPK signaling; metabolism; osteoarthritis; physiology; synovium; Chemokine CX3CL1; CX3C Chemokine Receptor 1; Fibroblasts; Humans; MAP Kinase Signaling System; Matrix Metalloproteinase 3; NF-kappa B; Osteoarthritis; Proto-Oncogene Proteins c-raf; Signal Transduction; Synovial Membrane
Publisher
BioMed Central Ltd.
Type
journal article

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