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通过对Runx2(-/-)小鼠模型的综合分析检测新型骨骼发生靶基因。

Detection of novel skeletogenesis target genes by comprehensive analysis of a Runx2(-/-) mouse model.

作者信息

Hecht J, Seitz V, Urban M, Wagner F, Robinson P N, Stiege A, Dieterich C, Kornak U, Wilkening U, Brieske N, Zwingman C, Kidess A, Stricker S, Mundlos S

机构信息

Max Planck Institute for Molecular Genetics, Ihnestr. 73, 14195 Berlin,Germany.

出版信息

Gene Expr Patterns. 2007 Jan;7(1-2):102-12. doi: 10.1016/j.modgep.2006.05.014. Epub 2006 Jun 6.

Abstract

Runx2 is an essential factor for skeletogenesis and heterozygous loss causes cleidocranial dysplasia in humans and a corresponding phenotype in the mouse. Homozygous Runx2-deficient mice lack hypertrophic cartilage and bone. We compared the expression profiles of E14.5 wildtype and Runx2(-/-) murine embryonal humeri to identify new transcripts potentially involved in cartilage and bone development. Seventy-one differentially expressed genes were identified by two independent oligonucleotide-microarray hybridizations and quantitative RT-PCR experiments. Gene Ontology analysis demonstrated an enrichment of the differentially regulated genes in annotations to terms such as extracellular, skeletal development, and ossification. In situ hybridization on E15.5 limb sections was performed for all 71 differentially regulated genes. For 54 genes conclusive in situ hybridization results were obtained and all of them showed skeletal expression. Co-expression with Runx2 was demonstrated for 44 genes. While 41 of the 71 differentially expressed genes have a known role in bone and cartilage, we identified 21 known genes that have not yet been implicated in skeletal development and 9 entirely new transcripts. Expression in the developing skeleton was demonstrated for 21 of these genes.

摘要

Runx2是骨骼形成的关键因子,其杂合缺失会导致人类锁骨颅骨发育不全以及小鼠出现相应表型。Runx2基因纯合缺失的小鼠缺乏肥大软骨和骨骼。我们比较了E14.5野生型和Runx2(-/-)小鼠胚胎肱骨的表达谱,以鉴定可能参与软骨和骨骼发育的新转录本。通过两次独立的寡核苷酸微阵列杂交和定量RT-PCR实验,鉴定出71个差异表达基因。基因本体分析表明,差异调节基因在细胞外、骨骼发育和骨化等注释中富集。对所有71个差异调节基因进行了E15.5肢体切片的原位杂交。对于54个基因,获得了确凿的原位杂交结果,所有这些基因均显示出骨骼表达。44个基因被证明与Runx2共表达。虽然71个差异表达基因中有41个在骨骼和软骨中具有已知作用,但我们鉴定出21个尚未涉及骨骼发育的已知基因和9个全新的转录本。其中21个基因在发育中的骨骼中表达。

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