Department of Chemical and Systems Biology, Stanford University School of Medicine, Stanford, CA 94305-5174, USA.
Cell. 2012 Jun 22;149(7):1500-13. doi: 10.1016/j.cell.2012.05.028.
Mitosis is triggered by the activation of Cdk1-cyclin B1 and its translocation from the cytoplasm to the nucleus. Positive feedback loops regulate the activation of Cdk1-cyclin B1 and help make the process irreversible and all-or-none in character. Here we examine whether an analogous process, spatial positive feedback, regulates Cdk1-cyclin B1 redistribution. We used chemical biology approaches and live-cell microscopy to show that nuclear Cdk1-cyclin B1 promotes the translocation of Cdk1-cyclin B1 to the nucleus. Mechanistic studies suggest that cyclin B1 phosphorylation promotes nuclear translocation and, conversely, nuclear translocation promotes cyclin B1 phosphorylation, accounting for the feedback. Interfering with the abruptness of Cdk1-cyclin B1 translocation affects the timing and synchronicity of subsequent mitotic events, underscoring the functional importance of this feedback. We propose that spatial positive feedback ensures a rapid, complete, robust, and irreversible transition from interphase to mitosis and suggest that bistable spatiotemporal switches may be widespread in biological regulation.
有丝分裂是由 Cdk1-cyclin B1 的激活及其从细胞质向细胞核的转位触发的。正反馈回路调节 Cdk1-cyclin B1 的激活,并有助于使该过程不可逆且具有全或无的特征。在这里,我们研究了类似的过程,即空间正反馈,是否调节 Cdk1-cyclin B1 的重新分布。我们使用化学生物学方法和活细胞显微镜表明,核 Cdk1-cyclin B1 促进 Cdk1-cyclin B1 向核内的转位。机制研究表明,cyclin B1 的磷酸化促进核转位,反之亦然,核转位促进 cyclin B1 的磷酸化,这就是反馈。干扰 Cdk1-cyclin B1 转位的突然性会影响随后有丝分裂事件的时间和同步性,强调了这种反馈的功能重要性。我们提出空间正反馈确保了从间期中快速、完整、稳健和不可逆地过渡到有丝分裂,并表明双稳态时空开关可能在生物调节中广泛存在。