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前几代和当代3Y1大鼠成纤维细胞进入S期准备过程中的调控及其与静止状态的关系。

Control in previous and present generations of preparation for entry into S phase and the relationship to resting state in 3Y1 rat fibroblastic cells.

作者信息

Okuda A, Kimura G

出版信息

Exp Cell Res. 1984 Nov;155(1):24-32. doi: 10.1016/0014-4827(84)90764-x.

Abstract

In both the presence and absence of serum, 3Y1 rat fibroblastic cells synchronized at early S phase by aphidicolin entered M phase 6 h after removal of aphidicolin. However, in the second generation their entry into S phase in the presence of serum was delayed due to the deprivation of serum in the first generation. A similar delaying effect in the second generation was observed when the resting cells were stimulated by serum and then deprived of serum during a period of 8 h preceding mitosis. In both cases, the interval between mitosis and entry into S phase in the second generation was almost equal to that required for the resting cells to enter S phase when stimulated by serum. A similar delaying effect was also observed when the cells, synchronized at early S phase, were kept in suspension culture in the presence of serum for a period in the first generation. Results of a similar type of experiments using various combinations of growth factors showed that, when the G1 period in the second generation was shortened by exposure to growth factors in the first generation, and when the resting cells were stimulated to enter S phase, the same combination of growth factors was required. These and previous results suggest that the preparation for entry into S phase is controlled in both previous and present generations of 3Y1 cells.

摘要

在有血清和无血清的情况下,用阿非迪霉素同步于早S期的3Y1大鼠成纤维细胞在去除阿非迪霉素6小时后进入M期。然而,在第二代中,由于第一代血清剥夺,它们在有血清存在时进入S期的时间延迟。当静止细胞受到血清刺激,然后在有丝分裂前8小时剥夺血清时,在第二代中也观察到类似的延迟效应。在这两种情况下,第二代有丝分裂和进入S期之间的间隔几乎等于静止细胞受到血清刺激时进入S期所需的时间。当在第一代中,同步于早S期的细胞在有血清存在的情况下在悬浮培养中保持一段时间时,也观察到类似的延迟效应。使用各种生长因子组合的类似类型实验结果表明,当第二代的G1期通过第一代暴露于生长因子而缩短时,以及当静止细胞被刺激进入S期时,需要相同的生长因子组合。这些结果和以前的结果表明,3Y1细胞的前一代和当前代进入S期的准备过程都受到控制。

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