Kim Da Sol, Lee Sun Young, Lee Jung Hee, Bae Yong Chan, Jung Jin Sup
Department of Physiology, School of Medicine, Pusan National University, Yangsan, Korea.
Department of Plastic Surgery, School of Medicine, Pusan National University, Pusan, Korea.
Exp Mol Med. 2015 Jul 10;47(7):e172. doi: 10.1038/emm.2015.39.
The elucidation of the molecular mechanisms underlying the differentiation and proliferation of human adipose tissue-derived stromal cells (hADSCs) represents a critical step in the development of hADSCs-based cellular therapies. To examine the role of the microRNA-103a-3p (miR-103a-3p) in hADSCs functions, miR-103a-3p mimics were transfected into hADSCs in order to overexpress miR-103a-3p. Osteogenic differentiation was induced for 14 days in an osetogenic differentiation medium and assessed by using an Alizarin Red S stain. The regulation of the expression of CDK6 (cyclin-dependent kinase 6), a predicted target of miR-103a-3p, was determined by western blot, real-time PCR and luciferase reporter assays. Overexpression of miR-103a-3p inhibited the proliferation and osteogenic differentiation of hADSCs. In addition, it downregulated protein and mRNA levels of predicted target of miR-103a-3p (CDK6 and DICER1). In contrast, inhibition of miR-103a-3p with 2'O methyl antisense RNA increased the proliferation and osteogenic differentiation of hADSCs. The luciferase reporter activity of the construct containing the miR-103a-3p target site within the CDK6 and DICER1 3'-untranslated regions was lower in miR-103a-3p-transfected hADSCs than in control miRNA-transfected hADSCs. RNA interference-mediated downregulation of CDK6 and DICER1 in hADSCs inhibited their proliferation and osteogenic differentiation. The results of the current study indicate that miR-103a-3p regulates the osteogenic differentiation of hADSCs and proliferation of hADSCs by direct targeting of CDK6 and DICER1 partly. These findings further elucidate the molecular mechanisms governing the differentiation and proliferation of hADSCs.
阐明人脂肪组织来源的基质细胞(hADSCs)分化和增殖的分子机制是基于hADSCs的细胞疗法发展中的关键一步。为了研究微小RNA-103a-3p(miR-103a-3p)在hADSCs功能中的作用,将miR-103a-3p模拟物转染到hADSCs中以过表达miR-103a-3p。在成骨分化培养基中诱导成骨分化14天,并使用茜素红S染色进行评估。通过蛋白质印迹、实时PCR和荧光素酶报告基因测定法确定miR-103a-3p的预测靶标细胞周期蛋白依赖性激酶6(CDK6)表达的调节。miR-103a-3p的过表达抑制了hADSCs的增殖和成骨分化。此外,它下调了miR-103a-3p预测靶标(CDK6和DICER1)的蛋白质和mRNA水平。相反,用2'O甲基反义RNA抑制miR-103a-3p可增加hADSCs的增殖和成骨分化。在miR-103a-3p转染的hADSCs中,包含CDK6和DICER1 3'-非翻译区内miR-103a-3p靶位点的构建体的荧光素酶报告基因活性低于对照miRNA转染的hADSCs。RNA干扰介导的hADSCs中CDK6和DICER1的下调抑制了它们的增殖和成骨分化。当前研究结果表明,miR-103a-3p部分通过直接靶向CDK6和DICER1来调节hADSCs的成骨分化和hADSCs的增殖。这些发现进一步阐明了控制hADSCs分化和增殖的分子机制。