Stem Cell Unit, Department of Anatomy, College of Medicine, King Saud University, Riyadh, Saudi Arabia.
Dental Health Department, College of Applied Medical Sciences, King Saud University, Riyadh, Saudi Arabia.
Cell Biochem Funct. 2023 Jul;41(5):590-598. doi: 10.1002/cbf.3814. Epub 2023 May 24.
Bone formation is regulated by numerous factors, such as transcription factors, cytokines, and extracellular matrix molecules. Human hormone nuclear receptors (hHNR) are a family of ligand-regulated transcription factors that are activated by steroid hormones, such as estrogen and progesterone, and various lipid-soluble signals, including retinoic acid, oxysterols, and thyroid hormone. We found that an hHNR called NR4A1 was the most highly expressed after human MSC differentiation into osteoblasts by whole-genome microarray. NR4A1 knockout decreased the osteoblastic differentiation of hMSCs in terms of ALPL expression and key marker gene expression. Whole-genome microarray analysis further confirmed the decrease in key pathways when we knocked down NR4A1. Further studies with small molecule activators identified a novel molecule called Elesclomol (STA-4783), which could activate and enhance osteoblast differentiation. Elesclomol activation of hMSCs also induced the gene expression of NR4A1 and rescued the phenotype of NR4A1 KD. In addition, Elesclomol activated the TGF-ß pathway by regulating key marker genes. In conclusion, we first identified the role of NR4A1 in osteoblast differentiation and that Elesclomol is a positive regulator of NR4A1 through activation of the TGF-ß signalling pathway.
骨形成受许多因素的调节,如转录因子、细胞因子和细胞外基质分子。人类激素核受体(hHNR)是一类配体调节转录因子家族,可被甾体激素(如雌激素和孕激素)和各种脂溶性信号(包括视黄酸、氧化固醇和甲状腺激素)激活。我们发现,在 hMSC 分化为成骨细胞的全基因组微阵列中,一种称为 NR4A1 的 hHNR 表达最高。NR4A1 敲除降低了 hMSCs 的成骨细胞分化,表现在 ALPL 表达和关键标记基因表达上。全基因组微阵列分析进一步证实了 NR4A1 敲低时关键途径的减少。进一步用小分子激活剂进行的研究鉴定了一种称为 Elesclomol(STA-4783)的新型分子,它可以激活和增强成骨细胞分化。Elesclomol 激活 hMSCs 也诱导了 NR4A1 的基因表达,并挽救了 NR4A1 KD 的表型。此外,Elesclomol 通过调节关键标记基因激活了 TGF-β 途径。总之,我们首次确定了 NR4A1 在成骨细胞分化中的作用,并且 Elesclomol 通过激活 TGF-β 信号通路成为 NR4A1 的正向调节剂。