Research Paper Volume 16, Issue 4 pp 3896—3914

GAS5, a long noncoding RNA, contributes to annulus fibroblast osteogenic differentiation and apoptosis in intervertebral disk degeneration via the miR-221-3p/SOX11 axis

Qi Liu1, *, , Jiaying Luo2, *, , Huan Wang1, , Lei Zhang1, , Jingwen Guo3, , Guoxin Jin1, ,

  • 1 Department of Orthopedics, Shengjing Hospital of China Medical University, Shenyang 110000, China
  • 2 School of Life Sciences and Biopharmaceuticals, Shenyang Pharmaceutical University, Shenyang 110000, China
  • 3 Institute of Health Sciences, China Medical University, Shenyang 110000, China
* Equal contribution and co-first authors

Received: July 10, 2023       Accepted: January 2, 2024       Published: February 23, 2024      

https://doi.org/10.18632/aging.205567
How to Cite

Copyright: © 2024 Liu et al. This is an open access article distributed under the terms of the Creative Commons Attribution License (CC BY 4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

Abstract

miR-221-3p has been reported to attenuate the osteogenic differentiation of annulus fibrosus cells (AFs), which has been implicated in intervertebral disk degeneration (IVDD) development. This study aimed to elucidate miR-221-3p’s role in osteogenic differentiation and apoptosis of AFs in an IVDD model. After successfully establishing an IVDD rat model by annulus fibrosus needle puncture, AFs were isolated. Bioinformatics, dual-luciferase reporter, and AGO2-RNA immunoprecipitation (RIP) assays predicted and confirmed the potential miR-221-3p lncRNA and gene target. Functional analyses were performed after AF transfection to explore the roles of the identified lncRNA and gene. Western blotting, Alkaline phosphatase (ALP), and Alizarin red and TUNEL staining were performed to investigate AF apoptosis and osteogenic differentiation with different transfections. Compared with AFs isolated from sham rats, IVDD-isolated Afs exhibited stronger osteogenic potential and higher apoptosis rates accompanied by miR-221-3p downregulation. The growth arrest-specific transcript 5 (GAS5) was identified as miR-221-3p’s target lncRNA, which was highly expressed in IVDD. GAS5 overexpression facilitated AF apoptosis and osteogenic differentiation, whereas silencing GAS5 had the opposite effect. SRY box-related11 (SOX11) was identified as a downstream miR-221-3p target gene in IVDD. GASS silencing-induced suppression of AF apoptosis and osteogenic differentiation could be reversed by SOX11 overexpression. Our findings uncovered a lncRNA GAS5/miR-221-3p/SOX11 axis in Afs under IVDD, which may help implement novel IVDD therapeutic strategies.

Abbreviations

AFs: annulus fibrosus cells; IVDD: intervertebral disc degeneration; RIP: RNA immunoprecipitation; GAS5: growth arrest-specific transcript 5; SOX11: SRY box-related11; LBP: Lower back pain; IVD: intervertebral disc; NP: nucleus pulposus; AF: annulus fibrosus; ncRNAs: noncoding RNAs; miRNAs: microRNAs; ceRNA: competing endogenous RNA; SD: Sprague-Dawley; Co6-7: coccygeal discs; H&E: hematoxylin-eosin; ALP: alkaline phosphatase; pNPP: p-nitrophenyl phosphate; ARS: alizarin red staining; WB: western blotting; HRP: horseradish peroxidase; OSX: osterix; COL-1: collagen I; OCN: osteocalcin; ANOVA: analysis of variance; IS: intervertebral space; EP: endplate; WT: wild-type; MUT: mutant.