Tenogenic differentiation of human tendon-derived stem cells induced by long non-coding RNA LINCMD1 via miR-342-3p/EGR1 axis

被引:1
|
作者
Qu, Feng [1 ,3 ]
Shen, Xuezhen [2 ]
Wang, Ketao [1 ]
Sun, Chengyi [1 ]
Li, Pengfei [1 ]
机构
[1] Capital Med Univ, Beijing Tongren Hosp, Dept Foot & Ankle Surg, Beijing, Peoples R China
[2] Capital Med Univ, Beijing Luhe Hosp, Dept Orthoped, Beijing, Peoples R China
[3] 1 Dongjiaominxiang St, Beijing 100730, Peoples R China
关键词
TDSCs; LINCMD1; MiR-342-3p; EGR1; tenogenic differentiation;
D O I
10.1080/03008207.2023.2217258
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
BackgroundTendon-derived stem cells (TDSCs) are proposed as a potential cell-seed for the treatment of tendon injury due to their tenogenic differentiation potential. In this work, we defined the action of long non-coding RNA (lncRNA) muscle differentiation 1 (LINCMD1) in tenogenic differentiation of human TDSCs (hTDSCs).MethodsQuantitative real-time PCR (qRT-PCR) was used to assess the levels of LINCMD1, microRNA (miR)-342-3p, and early growth response-1 (EGR1) mRNA. Cell proliferation was detected by the XTT colorimetric assay. Protein expression was quantified by western blot. hTDSCs were grown in an osteogenic medium to induce osteogenic differentiation, and the extent of osteogenic differentiation was assessed by Alizarin Red Staining (ARS). The activity of alkaline phosphatase (ALP) was measured by the ALP Activity Assay Kit. Dual-luciferase reporter and RNA immunoprecipitation (RIP) assays were used to evaluate the direct relationship between miR-342-3p and LINCMD1 or EGR1.ResultsOur results showed that enforced expression of LINCMD1 or suppression of miR-342-3p accelerated the proliferation and tenogenic differentiation and reduced osteogenic differentiation of hTDSCs. LINCMD1 regulated miR-342-3p expression by binding to miR-342-3p. EGR1 was identified as a direct and functional target of miR-342-3p, and knockdown of EGR1 reversed the effects of miR-342-3p suppression on cell proliferation and tenogenic and osteogenic differentiation. Furthermore, the miR-342-3p/EGR1 axis mediated the regulation of LINCMD1 on hTDSC proliferation and tenogenic and osteogenic differentiation.ConclusionOur study suggests the induction of LINCMD1 in tenogenic differentiation of hTDSCs through miR-342-3p/EGR1 axis.
引用
收藏
页码:479 / 490
页数:12
相关论文
共 50 条
  • [41] Long non-coding RNA NEAT1/miR-338-3p axis impedes the progression of acute myeloid leukemia via regulating CREBRF
    Song Feng
    Na Liu
    Xiaoguang Chen
    Yufeng Liu
    Jindou An
    Cancer Cell International, 20
  • [42] Silencing long non-coding RNA MIAT ameliorates myocardial dysfunction induced by myocardial infarction via MIAT/miR-10a-5p/EGR2 axis
    Cao, Xiangke
    Ma, Qinghua
    Wang, Bin
    Qian, Qingqiang
    Liu, Ning
    Liu, Tiejun
    Dong, Xiaoliu
    AGING-US, 2021, 13 (08): : 11188 - 11206
  • [43] Long non-coding RNA NEAT1/miR-338-3p axis impedes the progression of acute myeloid leukemia via regulating CREBRF
    Feng, Song
    Liu, Na
    Chen, Xiaoguang
    Liu, Yufeng
    An, Jindou
    CANCER CELL INTERNATIONAL, 2020, 20 (01)
  • [44] Long non-coding RNA TTN antisense RNA 1 facilitates hepatocellular carcinoma progression via regulating miR-139-5p/SPOCK1 axis
    Zhu, Xinghao
    Jiang, Shiqing
    Wu, Zongyao
    Liu, Tonghua
    Zhang, Wei
    Wu, Lili
    Xu, Lijun
    Shao, Mingliang
    BIOENGINEERED, 2021, 12 (01) : 578 - 588
  • [45] Down-regulation of long non-coding RNA MEG3 suppresses osteogenic differentiation of periodontal ligament stem cells (PDLSCs) through miR-27a-3p/IGF1 axis in periodontitis
    Liu, Yi
    Liu, Chunpeng
    Zhang, Ankui
    Yin, Shichang
    Wang, Ting
    Wang, Yan
    Wang, Meiming
    Liu, Yixin
    Ying, Qiaohui
    Sun, Jinrui
    Wei, Fulan
    Liu, Dongxu
    Wang, Chunling
    Ge, Shaohua
    AGING-US, 2019, 11 (15): : 5334 - 5350
  • [46] Long non-coding RNA MEG3 promotes fibrosis and inflammatory response in diabetic nephropathy via miR-181a/Egr-1/TLR4 axis
    Zha, Fangfang
    Qu, Xiaolu
    Tang, Bo
    Li, Ji
    Wang, Yakun
    Zheng, PengXi
    Ji, Tingting
    Zhu, Chun
    Bai, Shoujun
    AGING-US, 2019, 11 (11): : 3716 - 3730
  • [47] Long non-coding RNA HOXB-AS1 promotes proliferation, migration and invasion of glioblastoma cells via HOXB-AS1/miR-885-3p/HOXB2 axis
    Chen, X.
    Li, L. Q.
    Qiu, X.
    Wu, H.
    NEOPLASMA, 2019, 66 (03) : 386 - +
  • [48] Long non-coding RNA BACE1-AS plays an oncogenic role in hepatocellular carcinoma cells through miR-214-3p/APLN axis
    Tian, Qing
    Yan, Xiaodong
    Yang, Long
    Liu, Zirong
    Yuan, Zheyue
    Zhang, Yamin
    ACTA BIOCHIMICA ET BIOPHYSICA SINICA, 2021, 53 (11) : 1538 - 1546
  • [49] Long non-coding RNA NEAT1 promotes lipopolysaccharide-induced injury in human tubule epithelial cells by regulating miR-93-5p/TXNIP axis
    Yang, Jing
    Wu, Lin
    Liu, Shanshou
    Hu, Xiaomin
    Wang, Qianmei
    Fang, Liying
    MEDICAL MICROBIOLOGY AND IMMUNOLOGY, 2021, 210 (2-3) : 121 - 132
  • [50] Long non-coding RNA MALAT1 regulates oxaliplatin-resistance via miR-324-3p/ADAM17 axis in colorectal cancer cells
    Fan, Changru
    Yuan, Qiulan
    Liu, Guifeng
    Zhang, Yuliang
    Yan, Maojun
    Sun, Qingxu
    Zhu, Chaoyu
    CANCER CELL INTERNATIONAL, 2020, 20 (01)