Bernardini Camilla, Saulnier Nathalie, Parrilla Claudio, Pola Enrico, Gambotto Andrea, Michetti Fabrizio, Robbins Paul D, Lattanzi Wanda
Institute of Anatomy and Cell Biology, Catholic University, School of Medicine, Rome, Italy.
Gene Expr. 2010;15(1):27-42. doi: 10.3727/105221610x12819686555097.
Lim mineralization protein-3 (LMP3) induces osteoblast differentiation by regulating the expression and activity of certain molecules involved in the osteogenic cascade, including those belonging to the bone morphogenetic protein (BMP) family. The complete network of molecular events involved in LMP3-mediated osteogenesis is still unknown. The aim of this study was to analyze the genome-wide gene expression profiles in human mesenchymal stem cells (hMSC) induced by exogenous LMP3 to mediate osteogenesis. For this purpose hMSC were transduced with a defective adenoviral vector expressing the human LMP3 gene and microarray analysis was performed 1 day post-adenoviral transduction. Cells transduced with the vector backbone and untransduced cells were used as independent controls in the experiments. Microarray data were independently validated by means of real-time PCR on selected transcripts. The statistical analysis of microarray data produced a list of 263 significantly (p < 0.01) differentially expressed transcripts. The biological interpretation of the results indicated, among the most noteworthy effects, the modulation of genes involved in the TGF-beta1 pathway: 88 genes coding for key regulators of the cell cycle regulatory machinery and 28 genes implicated in the regulation of cell proliferation along with the development of connective, muscular, and skeletal tissues. These results suggested that LMP3 could affect the fine balance between cell proliferation/differentiation of mesenchymal cells mostly by modulating the TGF-beta1 signaling pathway.
肢体矿化蛋白-3(LMP3)通过调节成骨级联反应中某些分子的表达和活性来诱导成骨细胞分化,这些分子包括骨形态发生蛋白(BMP)家族的成员。LMP3介导成骨过程中涉及的分子事件完整网络仍不清楚。本研究的目的是分析外源性LMP3诱导人间充质干细胞(hMSC)介导成骨过程中的全基因组基因表达谱。为此,用表达人LMP3基因的缺陷腺病毒载体转导hMSC,并在腺病毒转导后1天进行微阵列分析。用载体骨架转导的细胞和未转导的细胞在实验中用作独立对照。微阵列数据通过对选定转录本进行实时PCR独立验证。微阵列数据的统计分析产生了一份263个差异显著(p < 0.01)的转录本列表。结果的生物学解释表明,在最值得注意的影响中,涉及TGF-β1途径的基因受到调控:88个编码细胞周期调控机制关键调节因子的基因和28个与细胞增殖调控以及结缔组织、肌肉组织和骨骼组织发育有关的基因。这些结果表明,LMP3可能主要通过调节TGF-β1信号通路来影响间充质细胞增殖/分化之间的精细平衡。