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Transformation by myc prevents fusion but not biochemical differentiation of C2C12 myoblasts: mechanisms of phenotypic correction in mixed culture with normal cells

机译:myc转化阻止C2C12成肌细胞融合但不能生化分化:与正常细胞混合培养的表型校正机制

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摘要

To study the effects of myc oncogene on muscle differentiation, we infected the murine skeletal muscle cell line C2C12 with retroviral vectors encoding various forms of avian c- or v-myc oncogene. myc expression induced cell transformation but, unlike many other oncogenes, prevented neither biochemical differentiation, nor commitment (irreversible withdrawal from the cell cycle). Yet, myotube formation by fusion of differentiated cells was strongly inhibited. Comparison of uninfected C2C12 myotubes with differentiated myc- expressing C2C12 did not reveal consistent differences in the expression of several muscle regulatory or structural genes. The present results lead us to conclude that transformation by myc is compatible with differentiation in C2C12 cells. myc expression induced cell death under growth restricting conditions. Differentiated cells escaped cell death despite continuing expression of myc, suggesting that the muscle differentiation programme interferes with the mechanism of myc-induced cell death. Cocultivation of v-myc-transformed C2C12 cells with normal fibroblasts or myoblasts restored fusion competence and revealed two distinguishable mechanisms that lead to correction of the fusion defect.
机译:为了研究myc癌基因对肌肉分化的影响,我们用编码各种形式的禽c-或v-myc癌基因的逆转录病毒载体感染了鼠骨骼肌细胞系C2C12。 myc表达诱导细胞转化,但与许多其他癌基因不同,它既没有阻止生化分化,也没有阻止承诺(不可逆转的退出细胞周期)。然而,通过分化细胞融合产生的肌管被强烈抑制。未感染的C2C12肌管与表达myc的分化C2C12的比较未显示出几种肌肉调节或结构基因表达的一致性差异。目前的结果使我们得出结论,myc的转化与C2C12细胞的分化是相容的。 myc表达在生长受限条件下诱导细胞死亡。尽管myc继续表达,但分化的细胞仍能逃脱细胞死亡,这表明肌肉分化程序会干扰myc诱导的细胞死亡机制。 v-myc转化的C2C12细胞与正常成纤维细胞或成肌细胞的共培养可恢复融合能力,并揭示了两种可纠正融合缺陷的机制。

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  • 年度 1994
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