Murakami M S, Vande Woude G F
ABL-Basic Research Program, NCI-Frederick Cancer Research and Development Center, MD 21702, USA.
Development. 1998 Jan;125(2):237-48. doi: 10.1242/dev.125.2.237.
In Xenopus, cdc2 tyrosine phosphorylation is detected in the first 60-75 minute cell cycle but not in the next eleven cell cycles (cycles 2-12) which are only 30 minutes long. Here we report that the wee1/cdc25 ratio increases before the first mitotic interphase. We show that the Xe-wee1 protein is absent in stage VI oocytes and is expressed from meiosis II until gastrulation. A dominant negative form of Xe-wee1 (KM wee1) reduced the level cdc2 tyrosine phosphorylation and length of the first cycle. However, the ratio of wee1/cdc25 did not decrease after the first cycle and therefore did not explain the lack of cdc2 tyrosine phosphorylation in, nor the rapidity of, cycles 2-12. Furthermore, there was no evidence for a wee1/myt1 inhibitor in cycles 2-12. We examined the role of Mos in the first cycle because it is present during the first 20 minutes of this cycle. We arrested the rapid embryonic cell cycle (cycle 2 or 3) with Mos and restarted the cell cycle with calcium ionophore; the 30 minute cycle was converted into a 60 minute cycle, with cdc2 tyrosine phosphorylation. In addition, the injection of a non-degradable Mos (MBP-Mos) into the first cycle resulted in a dramatic elongation of this cycle (to 140 minutes). MBP-Mos did not delay DNA replication or the translation of cyclins A or B; it did, however, result in the marked accumulation of tyrosine phosphorylated cdc2. Thus, while the wee1/cdc25 ratio changes during development, these changes may not be responsible for the variety of cell cycles observed during early Xenopus embryogenesis. Our experiments indicate that Mos/MAPK can also contribute to cell cycle length.
在非洲爪蟾中,在最初60 - 75分钟的细胞周期中可检测到细胞周期蛋白依赖性激酶2(cdc2)的酪氨酸磷酸化,但在接下来仅持续30分钟的11个细胞周期(第2 - 12个周期)中未检测到。在此我们报告,在第一次有丝分裂间期之前,wee1/cdc25的比值会升高。我们发现非洲爪蟾wee1(Xe - wee1)蛋白在VI期卵母细胞中不存在,从减数分裂II期一直表达至原肠胚形成期。Xe - wee1的显性负性形式(KM wee1)降低了cdc2酪氨酸磷酸化水平以及第一个周期的时长。然而,在第一个周期之后,wee1/cdc25的比值并未下降,因此无法解释在第2 - 12个周期中cdc2酪氨酸磷酸化的缺失以及这些周期的快速进程。此外,没有证据表明在第2 - 12个周期中存在wee1/微管酪氨酸激酶1(myt1)抑制剂。我们研究了丝裂原激活的蛋白激酶(Mos)在第一个周期中的作用,因为它在该周期的前20分钟存在。我们用Mos使快速的胚胎细胞周期(第2或3个周期)停滞,并用钙离子载体重新启动细胞周期;30分钟的周期转变为60分钟的周期,同时出现了cdc2酪氨酸磷酸化。此外,向第一个周期注射不可降解的Mos(麦芽糖结合蛋白 - Mos,MBP - Mos)导致该周期显著延长(至140分钟)。MBP - Mos并未延迟DNA复制或细胞周期蛋白A或B的翻译;然而,它确实导致了酪氨酸磷酸化的cdc2显著积累。因此,虽然wee1/cdc25的比值在发育过程中会发生变化,但这些变化可能并非非洲爪蟾早期胚胎发育过程中所观察到的各种细胞周期的原因。我们的实验表明,Mos/丝裂原活化蛋白激酶(MAPK)也可能影响细胞周期时长。