首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Transcriptome analysis of fetal metatarsal long bones by microarray, as a model for endochondral bone formation
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Transcriptome analysis of fetal metatarsal long bones by microarray, as a model for endochondral bone formation

机译:胎儿ome骨长骨的转录组分析,通过微阵列,作为软骨内骨形成的模型

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摘要

Endochondral bone formation is orchestrated by mesenchymal cell condensation to form cartilage anlagen, which act as a template for bone fort-nation and eventual mineralization. The current study performed gene expression analysis to examine pre- and post-mineralization stages (E15 and E19) of endochondral bone formation, using fetal metatarsal long bones as a model. An extensive number of genes were differentially expressed, with 543 transcripts found to have at least 2-fold up-regulation and 742 with a greater than 2-fold down-regulation. A bioinformatics approach was adopted based on gene ontology groups, and this identified genes associated with the regulation of signaling and skeletal development, cartilage replacement by bone, and matrix degradation and turnover. Transcripts linked to skeletal patterning, including Hoxd genes 10-12, Gli2 and Noggin were considerably down-regulated at E19. Whereas genes associated with bone matrix formation and turnover, ACP5, MMP-13, bone sialoprotein, osteopontin, dentin matrix protein-1 and MMP-9 all were distinctly up-regulated at this later time point. This approach to studying the formation of the primary ossification center provides a unique picture of the developmental dynamics involved in the molecular and biochemical processes during this intricately regulated process. (c) 2006 Elsevier B.V. All rights reserved.
机译:间充质细胞凝结形成软骨内骨形成软骨anlagen,软骨anlagen充当骨骼强化和最终矿化的模板。本研究以胎儿gene骨长骨为模型,进行了基因表达分析,以检查矿化前和矿化后软骨内骨形成的阶段(E15和E19)。差异表达大量基因,发现543个转录本至少具有2倍的上调,而742个转录物具有2倍以上的下调。根据基因本体论组采用了生物信息学方法,该方法鉴定了与信号传导和骨骼发育,骨软骨置换以及基质降解和更新相关的基因。与骨骼模式相关的转录本,包括Hoxd基因10-12,Gli2和Noggin,在E19时显着下调。而与骨基质形成和更新相关的基因,ACP5,MMP-13,骨唾液蛋白,骨桥蛋白,牙本质基质蛋白-1和MMP-9均在此稍后时间点明显上调。这种研究初级骨化中心形成的方法提供了在此复杂调控过程中涉及分子和生化过程的发育动力学的独特图片。 (c)2006 Elsevier B.V.保留所有权利。

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