Brooks R F, Bennett D C, Smith J A
Cell. 1980 Feb;19(2):493-504. doi: 10.1016/0092-8674(80)90524-3.
Although a single transition in the cell cycle is both sufficient and necessary to account for the distribution of differences in the intermitotic times of sister cells, two random transitions seem necessary to account for the responses of quiescent cells to stimulation by growth factors. We propose that serum-depleted quiescent cells "rest" in an indeterminate state (Q) which they leave at random upon stimulation and initiate a lengthy process (L). Upon completion of L the cells enter another indeterminate state (A) which they also leave at random and shortly thereafter initiate S phase and subsequently divide. On leaving A they also re-enter Q, and, again at random, initiate L. This sequence, Q leads to L leads to A, is maintained in steady state proliferation, and because of the random exit from Q and A, overlaps to varying degrees with the conventional cell cycle (M-G1-S-G2-M). The hypothesis provides a qualitative account of various problematic features of the lag between stimulation and entry into S phase. It also provides a good quantitative account of the distribution of sibling differences, the correlation coefficient of sibling intermitotic times and the distribution of intermitotic times and the distribution of intermitotic times in steady state growing cultures. There are striking similarities between the hypothetical cycle and the centriole cycle.
尽管细胞周期中的单一转变对于解释姐妹细胞有丝分裂间期时间差异的分布既是充分的也是必要的,但对于解释静止细胞对生长因子刺激的反应,似乎需要两个随机转变。我们提出,血清饥饿的静止细胞处于一种不确定状态(Q)“静止”,受到刺激时它们随机离开该状态并启动一个漫长过程(L)。L完成后,细胞进入另一种不确定状态(A),它们同样随机离开该状态,此后不久启动S期并随后分裂。离开A时它们也重新进入Q,并再次随机启动L。这个序列,Q导致L导致A,在稳态增殖中得以维持,并且由于从Q和A的随机退出,与传统细胞周期(M-G1-S-G2-M)有不同程度的重叠。该假说对刺激与进入S期之间延迟的各种问题特征提供了定性解释。它还对姐妹差异的分布、姐妹有丝分裂间期时间的相关系数以及稳态生长培养物中有丝分裂间期时间的分布提供了很好的定量解释。假设的周期与中心粒周期之间存在显著相似性。