| Literature DB >> 26384841 |
Feng-Lai Yuan1, Ming-Dong Zhao2, Dong-Lin Jiang1, Cheng Jin1, Hai-Fei Liu3, Ming-Hui Xu1, Wei Hu4, Xia Li5.
Abstract
Acidic conditions are present in degenerated intervertebral discs and are believed to be responsible for matrix breakdown. Acid-sensing ion channel 1a (ASIC1a) is expressed in endplate chondrocytes, and its activation is associated with endplate chondrocyte apoptosis. However, the precise role of ASIC1a in regulating the matrix metabolic activity of endplate chondrocytes in response to extracellular acid remains poorly understood. Aggrecan (ACAN), type II collagen (Col2a1), and matrix metalloproteinase (MMP) expressions were determined using reverse transcription (RT)-PCR and Western blot. ASIC1a was knocked down by transfecting endplate chondrocytes with ASIC1a siRNA. MMP activity and NF-κB transcriptional activity were measured. NF-κB transcriptional activity was assessed by examining cytosolic phosphorylated IκBα and nuclear phosphorylated p65 levels. Extracellular acidic solution (pH 6.0) resulted in a decrease in ACAN and Co12a1 expressions and an increase in MMP-1, MMP-9, and MMP-13 expressions, as well as in MMP activity; while ASIC1a siRNA blocked these effects. In addition, acid-induced increase in cytosolic levels of phosphorylated IκBα and nuclear levels of phosphorylated p65 in endplate chondrocytes were inhibited by ASIC1a siRNA. ASIC1a is involved in matrix metabolism of endplate chondrocytes under extracellular acidic conditions via NF-κB transcriptional activity.Entities:
Keywords: Acid-sensing ion channel 1a; Endplate chondrocytes; Extracellular pH; Metalloproteinases
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Year: 2015 PMID: 26384841 PMCID: PMC4679749 DOI: 10.1007/s12192-015-0643-7
Source DB: PubMed Journal: Cell Stress Chaperones ISSN: 1355-8145 Impact factor: 3.667