Barter Matt J, Tselepi Maria, Gómez Rodolfo, Woods Steven, Hui Wang, Smith Graham R, Shanley Daryl P, Clark Ian M, Young David A
Institute of Cellular Medicine, Newcastle University, Newcastle upon Tyne, United Kingdom.
Institute for Ageing and Health, Newcastle University, Newcastle upon Tyne, United Kingdom.
Stem Cells. 2015 Nov;33(11):3266-80. doi: 10.1002/stem.2093. Epub 2015 Jul 29.
microRNAs (miRNAs) are abundantly expressed in development where they are critical determinants of cell differentiation and phenotype. Accordingly miRNAs are essential for normal skeletal development and chondrogenesis in particular. However, the question of which miRNAs are specific to the chondrocyte phenotype has not been fully addressed. Using microarray analysis of miRNA expression during mesenchymal stem cell chondrogenic differentiation and detailed examination of the role of essential differentiation factors, such as SOX9, TGF-β, and the cell condensation phase, we characterize the repertoire of specific miRNAs involved in chondrocyte development, highlighting in particular miR-140 and miR-455. Further with the use of mRNA microarray data we integrate miRNA expression and mRNA expression during chondrogenesis to underline the particular importance of miR-140, especially the -5p strand. We provide a detailed identification and validation of direct targets of miR-140-5p in both chondrogenesis and adult chondrocytes with the use of microarray and 3'UTR analysis. This emphasizes the diverse array of targets and pathways regulated by miR-140-5p. We are also able to confirm previous experimentally identified targets but, additionally, identify a novel positive regulation of the Wnt signaling pathway by miR-140-5p. Wnt signaling has a complex role in chondrogenesis and skeletal development and these findings illustrate a previously unidentified role for miR-140-5p in regulation of Wnt signaling in these processes. Together these developments further highlight the role of miRNAs during chondrogenesis to improve our understanding of chondrocyte development and guide cartilage tissue engineering.
微小RNA(miRNA)在发育过程中大量表达,是细胞分化和表型的关键决定因素。因此,miRNA对正常骨骼发育至关重要,尤其是对软骨形成。然而,哪些miRNA对软骨细胞表型具有特异性这一问题尚未得到充分解决。通过对间充质干细胞软骨分化过程中miRNA表达进行微阵列分析,并详细研究关键分化因子(如SOX9、TGF-β)的作用以及细胞凝聚阶段,我们对参与软骨细胞发育的特异性miRNA库进行了表征,特别强调了miR-140和miR-455。进一步利用mRNA微阵列数据,我们整合了软骨形成过程中的miRNA表达和mRNA表达,以强调miR-140的特殊重要性,尤其是-5p链。我们通过微阵列和3'UTR分析,对miR-140-5p在软骨形成和成年软骨细胞中的直接靶点进行了详细鉴定和验证。这强调了miR-140-5p调控的多种靶点和途径。我们还能够证实先前实验确定的靶点,但此外,还发现了miR-140-5p对Wnt信号通路的新型正向调控作用。Wnt信号在软骨形成和骨骼发育中具有复杂作用,这些发现揭示了miR-140-5p在这些过程中对Wnt信号调控的一个此前未被发现的作用。这些进展共同进一步突出了miRNA在软骨形成过程中的作用,以增进我们对软骨细胞发育的理解,并指导软骨组织工程。