Department of Experimental Rheumatology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, 6525 GA Nijmegen, The Netherlands.
Cells. 2022 Apr 5;11(7):1232. doi: 10.3390/cells11071232.
During osteoarthritis (OA), hypertrophy-like chondrocytes contribute to the disease process. TGF-β's signaling pathways can contribute to a hypertrophy(-like) phenotype in chondrocytes, especially at high doses of TGF-β. In this study, we examine which transcription factors (TFs) are activated and involved in TGF-β-dependent induction of a hypertrophy-like phenotype in human OA chondrocytes. We found that TGF-β, at levels found in synovial fluid in OA patients, induces hypertrophic differentiation, as characterized by increased expression of , , , and . Using luciferase-based TF activity assays, we observed that the expression of these hypertrophy genes positively correlated to SMAD3:4, STAT3 and AP1 activity. Blocking these TFs using specific inhibitors for ALK-5-induced SMAD signaling (5 µM SB-505124), JAK-STAT signaling (1 µM Tofacitinib) and JNK signaling (10 µM SP-600125) led to the striking observation that only SB-505124 repressed the expression of hypertrophy factors in TGF-β-stimulated chondrocytes. Therefore, we conclude that ALK5 kinase activity is essential for TGF-β-induced expression of crucial hypertrophy factors in chondrocytes.
在骨关节炎(OA)中,肥大样软骨细胞有助于疾病进程。TGF-β 的信号通路可能导致软骨细胞出现肥大样表型,尤其是在 TGF-β 的高剂量下。在这项研究中,我们研究了哪些转录因子(TFs)被激活并参与了 TGF-β 依赖性诱导人 OA 软骨细胞出现肥大样表型。我们发现,TGF-β 在 OA 患者滑液中发现的水平诱导了肥大分化,表现为表达增加、、、和。使用基于荧光素酶的 TF 活性测定,我们观察到这些肥大基因的表达与 SMAD3:4、STAT3 和 AP1 活性呈正相关。使用特定的抑制剂阻断这些 TF,ALK-5 诱导的 SMAD 信号(5 µM SB-505124)、JAK-STAT 信号(1 µM Tofacitinib)和 JNK 信号(10 µM SP-600125),我们惊人地发现只有 SB-505124 抑制了 TGF-β 刺激的软骨细胞中肥大因子的表达。因此,我们得出结论,ALK5 激酶活性对于 TGF-β 诱导软骨细胞中关键肥大因子的表达是必不可少的。