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成纤维细胞生长因子对BC3H1肌肉细胞系分化的调控

Control by fibroblast growth factor of differentiation in the BC3H1 muscle cell line.

作者信息

Lathrop B, Olson E, Glaser L

出版信息

J Cell Biol. 1985 May;100(5):1540-7. doi: 10.1083/jcb.100.5.1540.

Abstract

The regulation of creatine phosphokinase (CPK) expression by polypeptide growth factors has been examined in the clonal mouse muscle BC3H1 cell line. After arrest of cell growth by exposure to low concentrations of serum, BC3H1 cells accumulate high levels of muscle-specific proteins including CPK. The induction of this enzyme is reversible in the presence of high concentrations of fetal calf serum, which cause quiescent, differentiated cells to reenter the cell cycle. Under these conditions, the rate of CPK synthesis is drastically reduced. We show in the present communication that either pituitary-derived fibroblast growth factor (FGF) or brain-derived FGF are as effective as serum in repressing the synthesis of CPK when added to quiescent, differentiated cells. The decrease in the rate of synthesis of CPK occurs within 22 h after the addition of pituitary FGF to the cells. Pituitary FGF had very little effect, if any, on the rate CPK degradation. The overall rate of protein synthesis and the pattern of synthesis of the major polypeptides made by these cells was not altered by the addition of FGF. Although pituitary FGF was mitogenic for BC3H1 cells, the rate of cell growth was not absolutely correlated with the extent of repression of CPK. Brain-derived FGF fully repressed CPK induction under conditions where it showed no significant mitogenic activity. These results show that the expression of a muscle-specific protein, CPK, can be controlled by a single defined polypeptide growth factor in fully differentiated cultures, and that initiation of cell division is not required for their regulation to take place.

摘要

已在克隆的小鼠肌肉BC3H1细胞系中研究了多肽生长因子对肌酸磷酸激酶(CPK)表达的调节作用。通过暴露于低浓度血清使细胞生长停滞后,BC3H1细胞会积累高水平的包括CPK在内的肌肉特异性蛋白。在高浓度胎牛血清存在的情况下,这种酶的诱导是可逆的,高浓度胎牛血清会使静止的分化细胞重新进入细胞周期。在这些条件下,CPK的合成速率会大幅降低。我们在本通讯中表明,当添加到静止的分化细胞中时,垂体来源的成纤维细胞生长因子(FGF)或脑来源的FGF在抑制CPK合成方面与血清一样有效。向细胞中添加垂体FGF后22小时内,CPK的合成速率就会下降。垂体FGF对CPK降解速率几乎没有影响(如果有影响的话也很小)。添加FGF不会改变这些细胞的总体蛋白质合成速率以及主要多肽的合成模式。尽管垂体FGF对BC3H1细胞有促有丝分裂作用,但细胞生长速率与CPK抑制程度并非绝对相关。在脑来源的FGF没有显著促有丝分裂活性的条件下,它能完全抑制CPK的诱导。这些结果表明,在完全分化的培养物中,一种肌肉特异性蛋白CPK的表达可以由单一确定的多肽生长因子控制,并且其调节作用的发生不需要细胞分裂的启动。

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