Kylsten P, Saint R
Department of Developmental Biology, Wenner-Gren Institute, Stockholm University, Sweden.
Dev Biol. 1997 Dec 15;192(2):509-22. doi: 10.1006/dbio.1997.8770.
The highly conserved regulatory mechanisms that control progression of a cell through the cell cycle do not, alone, explain the programmed control of cell proliferation during animal development. Additional controls must coordinate the cell cycle regulators with developmental regulatory events. Here we report studies of cell cycle control in the imaginal tissues of Drosophila melanogaster, specifically in situations where cell cycle progression is regulated by varying the length of the G2 phase. We show that G2-phase arrest in late larval wing imaginal disks requires transcriptional control of stg, a mitotic inducer that encodes a D. melanogaster homologue of the Schizosaccharomyces pombe p80cdc25 phosphatase. In a second study, string transcriptional regulation was also shown to be important for G2-phase regulation in eye disk cells posterior to the morphogenetic furrow. Finally, unlike all other situations described to date, string transcriptional regulation was found not to be the cause of G2 arrest in abdominal histoblasts, these cells being refractory to ectopic expression of stg. This study further establishes string as an important regulator of G2 phase during D. melanogaster development, but also reveals that at least one additional mechanism is utilized to control G2-phase length and thus cell proliferation in different developmental contexts.
控制细胞通过细胞周期进程的高度保守的调控机制,单凭自身并不能解释动物发育过程中细胞增殖的程序性控制。额外的调控必须使细胞周期调控因子与发育调控事件相协调。在此,我们报告了对黑腹果蝇成虫盘组织中细胞周期控制的研究,特别是在通过改变G2期长度来调控细胞周期进程的情况下。我们发现,幼虫晚期翅成虫盘中的G2期阻滞需要对stg进行转录调控,stg是一种有丝分裂诱导因子,编码粟酒裂殖酵母p80cdc25磷酸酶的黑腹果蝇同源物。在另一项研究中,还表明在形态发生沟后方的眼盘细胞中,string的转录调控对于G2期调控也很重要。最后,与迄今描述的所有其他情况不同,我们发现string的转录调控并非腹部组织干细胞中G2期阻滞的原因,这些细胞对stg的异位表达具有抗性。这项研究进一步确立了string作为黑腹果蝇发育过程中G2期的重要调控因子,但同时也揭示出至少还利用了一种额外机制来控制G2期长度,进而在不同发育环境中控制细胞增殖。