Adl S M, Berger J D
Department of Zoology, University of British Columbia, Vancouver, Canada.
J Eukaryot Microbiol. 1996 Mar-Apr;43(2):77-86. doi: 10.1111/j.1550-7408.1996.tb04484.x.
Near the end of the cell cycle, ciliates commit irreversibly to cell division. The point of commitment occurs at the time of oral polykinetid assembly and micronuclear anaphase. The commitment is a checkpoint which requisites a threshold cell mass/DNA ratio and stomatogenesis. It is also a physiological transition point, involving cdk protein kinases similar to those of other eukaryotes. Both P34 kD and P36 kD kinases, similar to the S. pombe cdc2 kinases, have been described to have activity as monomers. Subsequent to commitment to division, dramatic cytoskeletal modifications occur for separation of organelles, cortex morphogenesis and cytokinesis. Numerous mutants affecting cytoskeletal function associated with the division process have been obtained in several species. Of these, only the cc1 mutant in Paramecium affects cell cycle progression prior to commitment to division. The material reviewed is used to speculate about the mechanisms of regulation of pre-fission morphogenesis and cell division related processes in ciliates.
在细胞周期接近尾声时,纤毛虫会不可逆转地进入细胞分裂阶段。这个决定点出现在口部多动基体组装和微核后期。该决定是一个检查点,它要求达到阈值细胞质量/DNA比率并完成口器发生。它也是一个生理转变点,涉及与其他真核生物相似的细胞周期蛋白依赖性蛋白激酶。已描述P34 kD和P36 kD激酶与粟酒裂殖酵母的cdc2激酶相似,以单体形式具有活性。在决定进行分裂之后,会发生剧烈的细胞骨架修饰,以实现细胞器分离、皮层形态发生和胞质分裂。在几个物种中已获得了许多影响与分裂过程相关的细胞骨架功能的突变体。其中,只有草履虫中的cc1突变体在决定分裂之前会影响细胞周期进程。所综述的材料用于推测纤毛虫中裂变前形态发生和细胞分裂相关过程的调控机制。