Atherton G T, Travers H, Deed R, Norton J D
CRC Department of Gene Regulation, Paterson Institute for Cancer Research, Christie Hospital National Health Service Trust, Manchester, United Kingdom.
Cell Growth Differ. 1996 Aug;7(8):1059-66.
To investigate the biological functions of the helix-loop-helix Id3 protein, we have examined the effects of ectopic modulation of Id3 expression on in vitro induced differentiation of mouse C2C12 myoblast cells. Transient and stable C2C12 transfectants expressing either inducible or constitutive levels of exogenous Id3 were impaired in their ability to differentiate in response to removal of mitogenic serum growth factors. Stable Id3 transfectants displayed an enhanced proliferative capacity associated with a delay in exit from the cell cycle in response to differentiation induction. Antisense blockade of Id3 potentiated differentiation and exit from S phase of the cell cycle. These observations suggest that Id3 functions as a negative regulator of differentiation by integrating mitogenic growth factor signaling into the gene regulatory program maintaining cell cycle progression.
为了研究螺旋-环-螺旋Id3蛋白的生物学功能,我们检测了Id3表达的异位调节对小鼠C2C12成肌细胞体外诱导分化的影响。表达可诱导或组成型水平外源性Id3的瞬时和稳定C2C12转染子,在去除有丝分裂血清生长因子后,其分化能力受损。稳定的Id3转染子表现出增殖能力增强,这与分化诱导后细胞周期退出延迟有关。Id3的反义阻断增强了分化并促进细胞从细胞周期的S期退出。这些观察结果表明,Id3通过将有丝分裂生长因子信号整合到维持细胞周期进程的基因调控程序中,作为分化的负调节因子发挥作用。