Department of Sports Medicine, National Regional Medical Center, Binhai Campus of the First Affiliated Hospital of Fujian Medical University, Fuzhou, 350212, China.
Department of Orthopedic Surgery, The First Affiliated Hospital of Fujian Medical University, No. 20, Chazhong Road, Taijiang District, Fujian Province, 350005, Fuzhou, China.
Mol Med. 2023 Mar 14;29(1):33. doi: 10.1186/s10020-023-00627-4.
Caveolin-1 has been predicted, based on RNA transcriptome sequencing, as a key gene in rotator cuff tear (RCT) and it is related to fatty infiltration. This study aims to elucidate the upstream and downstream mechanism of Caveolin-1 in fatty infiltration and bone-tendon healing after RCT in rat models.
Differentially expressed genes related to RCT were screened, followed by functional enrichment analysis and protein-protein interaction analysis. GATA6 was overexpressed and Caveolin-1 was knocked down in tendon stem cells (TSCs) to evaluate their effects on the adipogenic differentiation of TSCs. In addition, a RCT rat model was constructed and injected with lentivirus carrying oe-GATA6, oe-Caveolin-1 alone or in combination to assess their roles in fatty infiltration and bone-tendon healing. RESULTS AND CONCLUSION: Caveolin-1 was identified as a key gene involved in the RCT process. In vitro results demonstrated that Caveolin-1 knockdown inhibited adipogenic differentiation of TSCs by activating the cAMP/PKA pathway. GATA6 inhibited the transcription of Caveolin-1 and inhibited its expression, thus suppressing the adipogenic differentiation of TSCs. In vivo data confirmed that GATA6 overexpression activated the cAMP/PKA pathway by downregulating Caveolin-1 and consequently repressed fatty infiltration, promoted bone-tendon healing, improved biomechanical properties and reduced the rupture risk of injured tendon in rats after RCT. Overall, this study provides novel insights into the mechanistic action of Caveolin-1 in the fatty infiltration and bone-tendon healing after RCT.
基于 RNA 转录组测序,预测窖蛋白-1 是肩袖撕裂(RCT)的关键基因,与脂肪浸润有关。本研究旨在阐明 Caveolin-1 在 RCT 后大鼠模型中脂肪浸润和骨腱愈合的上游和下游机制。
筛选与 RCT 相关的差异表达基因,进行功能富集分析和蛋白质-蛋白质相互作用分析。在肌腱干细胞(TSCs)中转染 GATA6 过表达和 Caveolin-1 敲低,评估它们对 TSCs 成脂分化的影响。此外,构建 RCT 大鼠模型,并注射携带过表达 GATA6、过表达 Caveolin-1 或两者组合的慢病毒,评估它们在脂肪浸润和骨腱愈合中的作用。
Caveolin-1 被鉴定为参与 RCT 过程的关键基因。体外结果表明,Caveolin-1 敲低通过激活 cAMP/PKA 通路抑制 TSCs 的成脂分化。GATA6 抑制 Caveolin-1 的转录和表达,从而抑制 TSCs 的成脂分化。体内数据证实,GATA6 过表达通过下调 Caveolin-1 激活 cAMP/PKA 通路,从而抑制脂肪浸润,促进骨腱愈合,改善生物力学性能,并降低 RCT 后大鼠受损肌腱的断裂风险。综上所述,该研究为 Caveolin-1 在 RCT 后脂肪浸润和骨腱愈合中的作用机制提供了新的见解。