Dell'Orco R T, Worthington M I
Samuel Roberts Noble Foundation, Inc., Ardmore, Oklahoma 73402.
J Cell Physiol. 1988 Jul;136(1):168-74. doi: 10.1002/jcp.1041360122.
Histone variant synthesis patterns from human diploid fibroblast-like cells of different in vitro ages were determined during exponential growth, at confluence, and during low serum arrest. The results are reported as the ratios of H2A variant synthesis (H2A.1 and H2A.2/H2A.x and H2A.z) and H3 variant synthesis (H3.1 and H3.2/H3.3) that have been used to characterize individual cell cycle states. Hydroxyurea was employed in some experiments to reduce S phase cells. The results indicate that high population doubling level (PDL) cells move through the G1 phase of the division cycle during exponential growth and exist in the G0 cell cycle state at confluence and during low serum arrest. Low PDL cells, however, exist in the G1 cell cycle state at confluence and revert to a G0 state only after maintenance as quiescent populations. This would suggest that when stimulated high PDL cells cannot enter into S phase, they revert to a GO cell cycle state.
在指数生长期、汇合期和低血清停滞期,测定了不同体外传代年龄的人二倍体成纤维样细胞的组蛋白变体合成模式。结果以H2A变体合成(H2A.1和H2A.2/H2A.x和H2A.z)与H3变体合成(H3.1和H3.2/H3.3)的比率报告,这些比率已用于表征各个细胞周期状态。在一些实验中使用羟基脲来减少S期细胞。结果表明,高群体倍增水平(PDL)细胞在指数生长期通过分裂周期的G1期,并在汇合期和低血清停滞期处于G0细胞周期状态。然而,低PDL细胞在汇合期处于G1细胞周期状态,只有在作为静止群体维持后才恢复到G0状态。这表明当受到刺激时,高PDL细胞无法进入S期,它们会恢复到G0细胞周期状态。