Li Zhaoyong, Hassan Mohammad Q, Volinia Stefano, van Wijnen Andre J, Stein Janet L, Croce Carlo M, Lian Jane B, Stein Gary S
Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester, MA 01655, USA.
Proc Natl Acad Sci U S A. 2008 Sep 16;105(37):13906-11. doi: 10.1073/pnas.0804438105. Epub 2008 Sep 10.
Bone morphogenetic proteins (BMPs) are potent morphogens that activate transcriptional programs for lineage determination. How BMP induction of a phenotype is coordinated with microRNAs (miRNAs) that inhibit biological pathways to control cell differentiation, remains unknown. Here, we show by profiling miRNAs during BMP2 induced osteogenesis of C2C12 mesenchymal cells, that 22 of 25 miRNAs which significantly changed in response to BMP2 are down-regulated. These miRNAs are each predicted to target components of multiple osteogenic pathways. We characterize two representative miRNAs and show that miR-133 directly targets Runx2, an early BMP response gene essential for bone formation, and miR-135 targets Smad5, a key transducer of the BMP2 osteogenic signal, controlled through their 3'UTR sequences. Both miRNAs functionally inhibit differentiation of osteoprogenitors by attenuating Runx2 and Smad5 pathways that synergistically contribute to bone formation. Although miR-133 is known to promote MEF-2-dependent myogenesis, we have identified a second complementary function to inhibit Runx2-mediated osteogenesis. Our key finding is that BMP2 controls bone cell determination by inducing miRNAs that target muscle genes but mainly by down-regulating multiple miRNAs that constitute an osteogenic program, thereby releasing from inhibition pathway components required for cell lineage commitment. Thus, our studies establish a mechanism for BMP morphogens to selectively induce a tissue-specific phenotype and suppress alternative lineages.
骨形态发生蛋白(BMPs)是强大的形态发生素,可激活用于谱系确定的转录程序。BMP诱导的表型如何与抑制生物途径以控制细胞分化的微小RNA(miRNA)协调,目前尚不清楚。在这里,我们通过分析BMP2诱导C2C12间充质细胞成骨过程中的miRNA发现,响应BMP2而显著变化的25个miRNA中有22个被下调。这些miRNA各自被预测靶向多个成骨途径的成分。我们对两个具有代表性的miRNA进行了表征,表明miR-133直接靶向Runx2,这是骨形成所必需的早期BMP反应基因,而miR-135靶向Smad5,它是BMP2成骨信号的关键转导因子,通过其3'UTR序列进行调控。这两种miRNA在功能上均通过减弱协同促进骨形成的Runx2和Smad5途径来抑制骨祖细胞的分化。尽管已知miR-133可促进MEF-2依赖性的肌生成,但我们发现了其抑制Runx2介导的成骨作用的第二种互补功能。我们的关键发现是,BMP2通过诱导靶向肌肉基因的miRNA来控制骨细胞的确定,但主要是通过下调构成成骨程序的多个miRNA,从而从细胞谱系定向所需的抑制途径成分中释放出来。因此,我们的研究建立了一种机制,使BMP形态发生素能够选择性地诱导组织特异性表型并抑制替代谱系。