Salazar Valerie S, Ohte Satoshi, Capelo Luciane P, Gamer Laura, Rosen Vicki
Department of Developmental Biology, Harvard School of Dental Medicine, 188 Longwood Avenue, Boston, MA 02115, USA.
Division of Pathophysiology, Research Center for Genomic Medicine, Saitama Medical University, 1397-1 Yamane, Hidaka-shi, Saitama 350-1241, Japan.
Development. 2016 Dec 1;143(23):4352-4367. doi: 10.1242/dev.136879. Epub 2016 Oct 17.
Enhanced BMP or canonical Wnt (cWnt) signaling are therapeutic strategies employed to enhance bone formation and fracture repair, but the mechanisms each pathway utilizes to specify cell fate of bone-forming osteoblasts remain poorly understood. Among all BMPs expressed in bone, we find that singular deficiency of Bmp2 blocks the ability of cWnt signaling to specify osteoblasts from limb bud or bone marrow progenitors. When exposed to cWnts, Bmp2-deficient cells fail to progress through the Runx2/Osx1 checkpoint and thus do not upregulate multiple genes controlling mineral metabolism in osteoblasts. Cells lacking Bmp2 after induction of Osx1 differentiate normally in response to cWnts, suggesting that pre-Osx1 osteoprogenitors are an essential source and a target of BMP2. Our analysis furthermore reveals Grainyhead-like 3 (Grhl3) as a transcription factor in the osteoblast gene regulatory network induced during bone development and bone repair, which acts upstream of Osx1 in a BMP2-dependent manner. The Runx2/Osx1 transition therefore receives crucial regulatory inputs from BMP2 that are not compensated for by cWnt signaling, and this is mediated at least in part by induction and activation of Grhl3.
增强骨形态发生蛋白(BMP)或经典Wnt(cWnt)信号传导是用于增强骨形成和骨折修复的治疗策略,但每条通路用于确定成骨细胞命运的机制仍知之甚少。在骨中表达的所有BMP中,我们发现Bmp2单独缺失会阻断cWnt信号传导从肢芽或骨髓祖细胞中确定成骨细胞的能力。当暴露于cWnts时,缺乏Bmp2的细胞无法通过Runx2/Osx1检查点,因此不会上调控制成骨细胞中矿物质代谢的多个基因。在诱导Osx1后缺乏Bmp2的细胞对cWnts有正常分化反应,这表明Osx1之前的骨祖细胞是BMP2的重要来源和靶点。我们的分析还揭示了颗粒头样3(Grhl3)是在骨发育和骨修复过程中诱导的成骨细胞基因调控网络中的一种转录因子,它以BMP2依赖的方式在Osx1上游起作用。因此,Runx2/Osx1转变从BMP2接收关键的调节输入,而cWnt信号传导无法补偿这些输入,并且这至少部分是由Grhl3的诱导和激活介导的。