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Gene expression changes during mouse skeletal myoblast differentiation revealed by transcriptional profiling

机译:通过转录谱揭示小鼠骨骼成肌细胞分化过程中的基因表达变化

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Gene expression changes during mouse skeletal myoblast differentiation revealed by transcriptional profiling. Physiol Genomics 10: 103-111, 2002. First published June 25, 2002; 10.1152/physiolgenomics.00011.2002.-Studies described here utilize high-density oligonucleotide arrays to characterize changes in global mRNA expression patterns during proliferation, cell cycle withdrawal, and terminal differentiation in mouse C2C12 myoblasts. Statistical analyses revealed 629 sequences differentially regulated between proliferating and differentiating myoblasts. These genes were clustered using self-organizing maps to identify sets of coregulated genes and were assigned to functional categories that were analyzed for distribution across expression clusters. Clusters were identified with statistically significant enrichment of functional categories including muscle contraction, cell adhesion, extracellular matrix function, cellular metabolism, mitochondrial transport, DNA replication, cell cycle control, mRNA transcription, and unexpectedly. immune regulation. In addition, functional category enrichment data can be used to predict gene function for numerous differentially regulated expressed sequence tags. The results provide new insight into how genes involved in these cellular processes may play a role in skeletal muscle growth and differentiation.
机译:基因表达变化在小鼠骨骼肌成肌细胞分化过程中通过转录谱揭示。 Physiol Genomics 10:103-111,2002年。2002年6月25日首次出版。 10.1152 / physiolgenomics.00011.2002.-这里描述的研究利用高密度寡核苷酸阵列来表征小鼠C2C12成肌细胞在增殖,细胞周期停药和终末分化过程中总体mRNA表达模式的变化。统计分析表明,有629个序列在增生和分化成肌细胞之间差异调节。使用自组织图对这些基因进行聚类,以鉴定成核基因组,并将其分配到功能类别中,对这些功能类别进行分析,以实现跨表达集群的分布。鉴定出的簇具有统计学上显着丰富的功能类别,包括肌肉收缩,细胞粘附,细胞外基质功能,细胞代谢,线粒体运输,DNA复制,细胞周期控制,mRNA转录以及意想不到的功能。免疫调节。另外,功能类别富集数据可用于预测众多差异调节表达序列标签的基因功能。这些结果提供了有关这些细胞过程中的基因如何在骨骼肌生长和分化中发挥作用的新见解。

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