Fu X, Xu J, Chaturvedi P, Liu H, Jiang R, Lan Y
1 Division of Developmental Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
2 Division of Plastic Surgery, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
J Dent Res. 2017 Nov;96(12):1451-1458. doi: 10.1177/0022034517719749. Epub 2017 Jul 21.
Previous studies have identified the odd-skipped related 2 (Osr2) transcription factor as a key intrinsic regulator of palatal shelf growth and morphogenesis. However, little is known about the molecular program acting downstream of Osr2 in the regulation of palatogenesis. In this study, we isolated palatal mesenchyme cells from embryonic day 12.5 (E12.5) and E13.5 Osr2 and Osr2 mutant mouse embryos and performed whole transcriptome RNA sequencing analyses. Differential expression analysis of the RNA sequencing datasets revealed that expression of 70 genes was upregulated and expression of 61 genes was downregulated by >1.5-fold at both E12.5 and E13.5 in the Osr2 palatal mesenchyme cells, in comparison with Osr2 littermates. Gene ontology analysis revealed enrichment of signaling molecules and transcription factors crucial for skeletal development and osteoblast differentiation among those significantly upregulated in the Osr2 mutant palatal mesenchyme. Using quantitative real-time polymerase chain reaction (RT-PCR)and in situ hybridization assays, we validated that the Osr2 embryos exhibit significantly increased and expanded expression of many osteogenic pathway genes, including Bmp3, Bmp5, Bmp7, Mef2c, Sox6, and Sp7 in the developing palatal mesenchyme. Furthermore, we demonstrate that expression of Sema3a, Sema3d, and Sema3e, is ectopically activated in the developing palatal mesenchyme in Osr2 embryos. Through chromatin immunoprecipitation, followed by RT-PCR analysis, we demonstrate that endogenous Osr2 protein binds to the promoter regions of the Sema3a and Sema3d genes in the embryonic palatal mesenchyme. Moreover, Osr2 expression repressed the transcription from the Sema3a and Sema3d promoters in cotransfected cells. Since the Sema3 subfamily of signaling molecules plays diverse roles in the regulation of cell proliferation, migration, and differentiation, these data reveal a novel role for Osr2 in regulation of palatal morphogenesis through preventing aberrant activation of Sema3 signaling. Together, these data indicate that Osr2 controls multiple molecular pathways, including BMP and Sema3 signaling, in palate development.
以往的研究已确定odd-skipped相关2(Osr2)转录因子是腭突生长和形态发生的关键内在调节因子。然而,对于Osr2在腭发生调控中作用的下游分子程序知之甚少。在本研究中,我们从胚胎第12.5天(E12.5)和E13.5的Osr2和Osr2突变小鼠胚胎中分离出腭间充质细胞,并进行了全转录组RNA测序分析。RNA测序数据集的差异表达分析显示,与Osr2同窝小鼠相比,在E12.5和E13.5时,Osr2腭间充质细胞中有70个基因的表达上调,61个基因的表达下调超过1.5倍。基因本体分析显示,在Osr2突变腭间充质中显著上调的基因中,富含对骨骼发育和成骨细胞分化至关重要的信号分子和转录因子。使用定量实时聚合酶链反应(RT-PCR)和原位杂交分析,我们验证了Osr2胚胎在发育中的腭间充质中许多成骨途径基因的表达显著增加且范围扩大,包括Bmp3、Bmp5、Bmp7、Mef2c、Sox6和Sp7。此外,我们证明在Osr2胚胎发育中的腭间充质中,Sema3a、Sema3d和Sema3e的表达被异位激活。通过染色质免疫沉淀,随后进行RT-PCR分析,我们证明内源性Osr2蛋白在胚胎腭间充质中与Sema3a和Sema3d基因的启动子区域结合。此外,Osr2表达抑制了共转染细胞中Sema3a和Sema3d启动子的转录。由于信号分子的Sema3亚家族在细胞增殖、迁移和分化的调控中发挥多种作用,这些数据揭示了Osr2通过防止Sema3信号异常激活在腭形态发生调控中的新作用。总之,这些数据表明Osr2在腭发育中控制多种分子途径,包括BMP和Sema3信号。