Karagiannis Jim
Department of Biology; University of Western Ontario; London, ON Canada.
Commun Integr Biol. 2012 May 1;5(3):265-71. doi: 10.4161/cib.19860.
Eukaryotic cells ensure error-free progress through the cell cycle by monitoring (1) the completion of cell cycle events, (2) damage to critical cellular components, or (3) structural changes such as the attachment of kinetochores to the mitotic spindle. In the presence of damage, or in the face of a reduced capacity to complete essential events, cells are capable of delaying the cell cycle so that damage can be repaired, or previous cell cycle phases can proceed to completion. Although such "checkpoints" have been extensively studied in many organisms-and much is understood with respect to the monitoring of DNA replication and DNA damage-little is known with regards to mechanisms that might monitor the completion of cytokinesis. In this review I summarize recent work from the fission yeast, Schizosaccharomyces pombe, describing the existence of regulatory modules that aid in ensuring the faithful and reliable execution of cytokinesis. Together, these modules promote the maintenance of a "cytokinesis-competent" state characterized by delayed progression into mitosis and the continuous repair and/or re-establishment of the acto-myosin ring. In this way, fission yeast cells are able to increase the likelihood of successful cell division prior to committing to a subsequent cell cycle. The recent demonstration of conservation between S. pombe components of these modules, and human proteins with defined roles in preventing cell division failure, suggest that the lessons learned in S. pombe may be applicable to other eukaryotes.
(1)细胞周期事件的完成;(2)关键细胞成分的损伤;或(3)诸如动粒与有丝分裂纺锤体附着等结构变化。在存在损伤的情况下,或者面对完成基本事件的能力下降时,细胞能够延迟细胞周期,以便修复损伤,或者使先前的细胞周期阶段能够完成。尽管这种“检查点”在许多生物体中已得到广泛研究,并且在DNA复制监测和DNA损伤方面也有很多了解,但对于可能监测胞质分裂完成情况的机制却知之甚少。在这篇综述中,我总结了来自裂殖酵母粟酒裂殖酵母的最新研究工作,描述了有助于确保胞质分裂忠实可靠执行的调控模块的存在。这些模块共同促进维持一种“具备胞质分裂能力”的状态,其特征是进入有丝分裂的进程延迟以及肌动蛋白-肌球蛋白环的持续修复和/或重建。通过这种方式,裂殖酵母细胞能够在进入后续细胞周期之前增加成功细胞分裂的可能性。最近在这些模块的粟酒裂殖酵母成分与在预防细胞分裂失败中具有明确作用的人类蛋白质之间发现的保守性表明,在粟酒裂殖酵母中获得的经验教训可能适用于其他真核生物。