Talavera A, Basilico C
J Cell Physiol. 1978 Dec;97(3 Pt 2 Suppl 1):429-39. doi: 10.1002/jcp.1040970318.
We have investigated the kinetics of exit from the resting state of BHK cells which had been arrested by isoleucine deprivation, serum starvation, or high temperature in the case of three ts G1 mutants. In addition, we have studied the effect of imposing a secondary deprivation on cells which had been released from one of the above mentioned blocks. The results obtained show that the quiescent states reached by BHK cells following serum or isoleucine deprivation cannot be differentiated on the basis of the exit kinetics from Smith and Martin's probabilistic A-state. Nevertheless, the response of cells to secondary deprivation is different, depending on the nature of the primary arresting condition used, reflecting physiological differences between the different resting states. A model is presented which postulates that cycle transition specific genes require the presence of different proliferative agents for their expression.
我们研究了三种ts G1突变体在异亮氨酸缺乏、血清饥饿或高温导致BHK细胞停滞于静止状态后的退出动力学。此外,我们还研究了对已从上述一种阻滞状态释放的细胞施加二次剥夺的影响。所得结果表明,BHK细胞在血清或异亮氨酸剥夺后达到的静止状态,无法根据从史密斯和马丁的概率性A状态退出的动力学来区分。然而,细胞对二次剥夺的反应有所不同,这取决于所使用的初始阻滞条件的性质,反映了不同静止状态之间的生理差异。我们提出了一个模型,该模型假定细胞周期转换特异性基因的表达需要不同增殖因子的存在。