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Integrated Transcriptome and Network Analysis Reveals Spatiotemporal Dynamics of Calvarial Suturogenesis

机译:集成的转录组和网络分析揭示了颅脲血管生成的时尚动态

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Craniofacial abnormalities often involve sutures, the growth centers of the skull. To characterize the organization and processes governing their development, we profile the murine frontal suture, a model for sutural growth and fusion, at the tissue- and single-cell level on embryonic days (E)16.5 and E18.5. For the wild-type suture, bulk RNA sequencing (RNA-seq) analysis identifies mesenchyme-, osteogenic front-, and stage-enriched genes and biological processes, as well as alternative splicing events modifying the extracellular matrix. Single-cell RNA-seq analysis distinguishes multiple subpopulations, of which five define a mesenchyme-osteoblast differentiation trajectory and show variation along the anteroposterior axis. Similar analyses of in?vivo mouse models of impaired frontal suturogenesis in Saethre-Chotzen and Apert syndromes, Twist1 sup +/? /sup and Fgfr2 sup +/S252W /sup, demonstrate distinct transcriptional changes involving angiogenesis and ribogenesis, respectively. Co-expression network analysis reveals gene expression modules from which we validate key driver genes regulating osteoblast differentiation. Our study provides a global approach to gain insights into suturogenesis.
机译:颅面异常往往涉及缝合线,颅骨的生长中心。为了表征管理其发展的组织和流程,我们介绍了鼠正面缝合,在胚胎周(e)16.5和e18.5上的组织和单细胞水平上进行脉络膜生长和融合的模型。对于野生型缝合线,体RNA测序(RNA-SEQ)分析鉴定了间充质 - ,溶血性前后和阶段的基因和生物过程,以及改性细胞外基质的替代剪接事件。单细胞RNA-SEQ分析区分多种亚步骤,其中五个亚离子化物质定义了间充质 - 成骨细胞分化轨迹并显示沿着前轴的变化。类似分析的索特尔 - 乙烯和Apert综合征在胎儿血液血管发生受损的体内鼠标模型,Twist1 + /? 和FGFR2 + / s252w ,证明了涉及血管生成和核糖发生的不同转录变化。共表达网络分析揭示了基因表达模块,我们验证了调节成骨细胞分化的关键驱动基因。我们的研究提供了一种全球性方法,可以进入苏特殖。

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