Elsafadi Mona, Manikandan Muthurangan, Alajez Nehad M, Hamam Rimi, Dawud Raed Abu, Aldahmash Abdullah, Iqbal Zafar, Alfayez Musaad, Kassem Moustapha, Mahmood Amer
Stem Cell Unit, Department of Anatomy, College of Medicine,King Saud University, Riyadh 11461, Saudi Arabia; KMEB, Department of Endocrinology, University Hospital of Odense, University of Southern Denmark, Winslowsparken 25.1, DK-5000 Odense C, Denmark.
Stem Cell Unit, Department of Anatomy, College of Medicine,King Saud University, Riyadh 11461, Saudi Arabia.
Stem Cell Res. 2017 Apr;20:94-104. doi: 10.1016/j.scr.2017.03.001. Epub 2017 Mar 8.
Understanding the regulatory networks underlying lineage differentiation and fate determination of human bone marrow stromal cells (hBMSC) is a prerequisite for their therapeutic use. The goal of the current study was to unravel the novel role of the low-density lipoprotein receptor-related protein 3 (LRP3) in regulating the osteogenic and adipogenic differentiation of immortalized hBMSCs. Gene expression profiling revealed significantly higher LRP3 levels in the highly osteogenic hBMSC clone imCL1 than in the less osteogenic clone imCL2, as well as a significant upregulation of LRP3 during the osteogenic induction of the imCL1 clone. Data from functional and gene expression assays demonstrated the role of LRP3 as a molecular switch promoting hBMSC lineage differentiation into osteoblasts and inhibiting differentiation into adipocytes. Interestingly, microRNA (miRNA) expression profiling identified miR-4739 as the most under-represented miRNA (-36.11 fold) in imCL1 compared to imCL2. The TargetScan prediction algorithm, combined with functional and biochemical assays, identified LRP3 mRNA as a novel target of miR-4739, with a single potential binding site for miR-4739 located in the LRP3 3' UTR. Regulation of LRP3 expression by miR-4739 was subsequently confirmed by qRT-PCR, western blotting, and luciferase assays. Over-expression of miR-4739 mimicked the effects of LRP3 knockdown on promoting adipogenic and suppressing osteogenic differentiation of hBMSCs. Hence, we report for the first time a novel biological role for the LRP3/hsa-miR-4739 axis in balancing osteogenic and adipocytic differentiation of hBMSCs. Our data support the potential utilization of miRNA-based therapies in regenerative medicine.
了解人类骨髓基质细胞(hBMSC)谱系分化和命运决定的调控网络是其治疗应用的前提条件。本研究的目的是揭示低密度脂蛋白受体相关蛋白3(LRP3)在调节永生化hBMSC成骨和成脂分化中的新作用。基因表达谱分析显示,高成骨性hBMSC克隆imCL1中的LRP3水平显著高于成骨性较低的克隆imCL2,并且在imCL1克隆的成骨诱导过程中LRP3显著上调。功能和基因表达分析的数据表明,LRP3作为分子开关,促进hBMSC谱系分化为成骨细胞并抑制其分化为脂肪细胞。有趣的是,微小RNA(miRNA)表达谱分析确定miR-4739是imCL1中与imCL2相比表达量最低的miRNA(-36.11倍)。TargetScan预测算法结合功能和生化分析,确定LRP3 mRNA是miR-4739的新靶点,miR-4739在LRP3的3'UTR中有一个潜在的结合位点。随后通过qRT-PCR、蛋白质印迹和荧光素酶分析证实了miR-4739对LRP3表达的调节作用。miR-4739的过表达模拟了LRP3敲低对促进hBMSC成脂分化和抑制成骨分化的影响。因此,我们首次报道了LRP3/hsa-miR-4739轴在平衡hBMSC成骨和成脂分化中的新生物学作用。我们的数据支持基于miRNA的疗法在再生医学中的潜在应用。