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体外培养的小鼠颅骨原代成骨细胞全基因组表达分析中成骨细胞、脂肪细胞和平滑肌细胞标志物的行为

Behavior of osteoblast, adipocyte, and myoblast markers in genome-wide expression analysis of mouse calvaria primary osteoblasts in vitro.

作者信息

Garcia T, Roman-Roman S, Jackson A, Theilhaber J, Connolly T, Spinella-Jaegle S, Kawai S, Courtois B, Bushnell S, Auberval M, Call K, Baron R

机构信息

Bone Disease Group, Aventis, Romainville, France.

出版信息

Bone. 2002 Jul;31(1):205-11. doi: 10.1016/s8756-3282(02)00781-0.

Abstract

Several genes, such as alkaline phosphatase, osteocalcin, and Cbfa1/Osf2, are known to be regulated during osteoblastic differentiation and are commonly used as "osteoblast markers" for in vitro or in vivo studies. The number of these genes is very limited, however, and it is of major interest to identify new genes that are activated or repressed during the process of osteoblast differentiation and bone formation as well as to extend the available information on gene families relevant to this particular differentiation pathway. To identify such genes, we have implemented a genome-wide analysis by determining changes in expression levels of 27,000 genes during in vitro differentiation of primary osteoblasts isolated from mouse calvaria. This study focuses on the description of the analytical and filtering process applied; on the transcriptional analysis of well-established "bone," "adipocyte," and "muscle" pathway markers; and on a description of the regulation profiles for genes recently described in the Skeletal Gene Database. We also demonstrate that new array technologies constitute reliable and powerful tools to monitor the transcription of genes involved in osteoblastic differentiation, allowing a more integrated vision of the biological pathways regulated during osteoblast commitment, differentiation, and function.

摘要

已知有几种基因,如碱性磷酸酶、骨钙素和Cbfa1/Osf2,在成骨细胞分化过程中受到调控,常用于体外或体内研究的“成骨细胞标志物”。然而,这些基因的数量非常有限,识别在成骨细胞分化和骨形成过程中被激活或抑制的新基因,以及扩展与这一特定分化途径相关的基因家族的现有信息,具有重大意义。为了识别此类基因,我们通过测定从小鼠颅骨分离的原代成骨细胞在体外分化过程中27000个基因的表达水平变化,进行了全基因组分析。本研究重点描述所应用的分析和筛选过程;对已确立的“骨”、“脂肪细胞”和“肌肉”途径标志物的转录分析;以及对骨骼基因数据库中最近描述的基因调控图谱的描述。我们还证明,新的阵列技术是监测参与成骨细胞分化的基因转录的可靠且强大的工具,能够更全面地了解在成骨细胞定向分化、分化和功能过程中受到调控的生物学途径。

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