Wang Peng, Larouche Myreille, Normandin Karine, Kachaner David, Mehsen Haytham, Emery Gregory, Archambault Vincent
a Département de biochimie et médecine moléculaire ; Université de Montréal ; Québec , Canada.
b Institute for Research in Immunology and Cancer, Université de Montréal , Montréal , Québec , Canada.
Cell Cycle. 2016;15(4):528-39. doi: 10.1080/15384101.2015.1127476.
Entry into mitosis requires the phosphorylation of multiple substrates by cyclin B-Cdk1, while exit from mitosis requires their dephosphorylation, which depends largely on the phosphatase PP2A in complex with its B55 regulatory subunit (Tws in Drosophila). At mitotic entry, cyclin B-Cdk1 activates the Greatwall kinase, which phosphorylates Endosulfine proteins, thereby activating their ability to inhibit PP2A-B55 competitively. The inhibition of PP2A-B55 at mitotic entry facilitates the accumulation of phosphorylated Cdk1 substrates. The coordination of these enzymes involves major changes in their localization. In interphase, Gwl is nuclear while PP2A-B55 is cytoplasmic. We recently showed that Gwl suddenly relocalizes from the nucleus to the cytoplasm in prophase, before nuclear envelope breakdown and that this controlled localization of Gwl is required for its function. We and others have shown that phosphorylation of Gwl by cyclin B-Cdk1 at multiple sites is required for its nuclear exclusion, but the precise mechanisms remained unclear. In addition, how Gwl returns to its nuclear localization was not explored. Here we show that cyclin B-Cdk1 directly inactivates a Nuclear Localization Signal in the central region of Gwl. This phosphorylation facilitates the cytoplasmic retention of Gwl, which is exported to the cytoplasm in a Crm1-dependent manner. In addition, we show that PP2A-Tws promotes the return of Gwl to its nuclear localization during cytokinesis. Our results indicate that the cyclic changes in Gwl localization at mitotic entry and exit are directly regulated by the antagonistic cyclin B-Cdk1 and PP2A-Tws enzymes.
进入有丝分裂需要细胞周期蛋白B - Cdk1对多种底物进行磷酸化,而退出有丝分裂则需要这些底物去磷酸化,这在很大程度上依赖于与B55调节亚基(果蝇中的Tws)结合的磷酸酶PP2A。在有丝分裂进入时,细胞周期蛋白B - Cdk1激活Greatwall激酶,该激酶使Endosulfine蛋白磷酸化,从而激活其竞争性抑制PP2A - B55的能力。有丝分裂进入时对PP2A - B55的抑制促进了磷酸化Cdk1底物的积累。这些酶的协调涉及它们定位的重大变化。在间期,Gwl位于细胞核中,而PP2A - B55位于细胞质中。我们最近发现,在核膜破裂之前的前期,Gwl会突然从细胞核重新定位到细胞质中,并且这种对Gwl的受控定位是其功能所必需的。我们和其他人已经表明,细胞周期蛋白B - Cdk1在多个位点对Gwl进行磷酸化是其核排除所必需的,但确切机制仍不清楚。此外,Gwl如何恢复其核定位尚未被探索。在这里我们表明,细胞周期蛋白B - Cdk1直接使Gwl中央区域的一个核定位信号失活。这种磷酸化促进了Gwl在细胞质中的保留,Gwl以依赖于Crm1的方式被输出到细胞质中。此外,我们表明PP2A - Tws在胞质分裂期间促进Gwl回到其核定位。我们的结果表明,Gwl在有丝分裂进入和退出时定位的周期性变化直接受拮抗的细胞周期蛋白B - Cdk1和PP2A - Tws酶的调节。