Chafouleas J G, Lagacé L, Bolton W E, Boyd A E, Means A R
Cell. 1984 Jan;36(1):73-81. doi: 10.1016/0092-8674(84)90075-8.
Release of CHO-K1 cells from plateau or stationary phase and reentry into the cell cycle is specifically and reversibly blocked at two distinct sites by the anticalmodulin drug W13. The first block occurs early during release while the cells are still at G0/G1, whereas the second occurs later in reentry during early S phase. As determined by radioimmunoassay, calmodulin levels undergo changes at three distinct steps in plateau-phase entry and release. First, the entry of exponentially growing cells into plateau phase is accompanied by an increase in the calmodulin level. The second change is a reduction in the calmodulin content of cells within the first hour following release from plateau phase. The third change is the subsequent increase in calmodulin levels, which precedes entry of the cells into S phase. Analysis of calmodulin mRNA levels by dot-blot hybridization demonstrates that the changes in calmodulin protein are preceded by changes in calmodulin mRNA. Furthermore, whereas a decrease in CaM mRNA is observed within the first hour following plateau release, no such decrease is observed for beta-actin mRNA, suggesting that this decrease may be selective for calmodulin. This selectivity is further substantiated by the fact that identical changes in calmodulin and calmodulin mRNA are observed in cells released from plateau by two different techniques. Taken together, these data suggest that calmodulin may play an important role in the reentry of cells into the cell cycle.
抗钙调蛋白药物W13可在两个不同位点特异性且可逆地阻断CHO-K1细胞从平台期或静止期释放并重新进入细胞周期的过程。第一个阻断发生在释放早期,此时细胞仍处于G0/G1期,而第二个阻断发生在重新进入早期S期的过程中。通过放射免疫测定确定,钙调蛋白水平在平台期进入和释放的三个不同阶段发生变化。首先,指数生长的细胞进入平台期伴随着钙调蛋白水平的升高。第二个变化是从平台期释放后的第一小时内细胞中钙调蛋白含量的降低。第三个变化是随后钙调蛋白水平的升高,这发生在细胞进入S期之前。通过斑点印迹杂交分析钙调蛋白mRNA水平表明,钙调蛋白蛋白的变化之前先有钙调蛋白mRNA的变化。此外,虽然在平台期释放后的第一小时内观察到CaM mRNA的减少,但β-肌动蛋白mRNA没有观察到这种减少,这表明这种减少可能对钙调蛋白具有选择性。钙调蛋白和钙调蛋白mRNA在通过两种不同技术从平台期释放的细胞中观察到相同的变化,这一事实进一步证实了这种选择性。综上所述,这些数据表明钙调蛋白可能在细胞重新进入细胞周期中起重要作用。