Stonyte Vilte, Martín Ruth, Segura-Peña Dario, Sekulić Nikolina, Lopez-Aviles Sandra
Centre for Molecular Medicine Norway (NCMM), Nordic EMBL Partnership, University of Oslo, Oslo, Norway.
Centre for Molecular Medicine Norway (NCMM), Nordic EMBL Partnership, University of Oslo, Oslo, Norway.
iScience. 2020 May 22;23(5):101063. doi: 10.1016/j.isci.2020.101063. Epub 2020 Apr 16.
Exit from the cell cycle during the establishment of quiescence and upon cell differentiation requires the sustained inactivation of CDK complexes. Fission yeast cells deprived of nitrogen halt cell cycle progression in pre-Start G1, before becoming quiescent or undergoing sexual differentiation. The CDK inhibitor Rum1 and the APC/C activator Ste9 are fundamental for this arrest, but both are down-regulated by CDK complexes. Here, we show that PP2A-B56 is instrumental for Rum1 stabilization and Ste9 activation. In the absence of PP2A-B56, cells fail to accumulate Rum1, and this results in persistent CDK activity, Ste9 inactivation, retention of the mitotic cyclin Cdc13, and impaired withdrawal from the cell cycle during nitrogen starvation. Importantly, mutation of a putative B56 interacting motif in Rum1 recapitulates these defects. These results underscore the relevance of CDK-counteracting phosphatases in cell differentiation, establishment of the quiescent state, and escape from it in cancer cells.
在静止状态建立期间以及细胞分化时退出细胞周期需要CDK复合物的持续失活。缺乏氮源的裂殖酵母细胞在进入静止状态或进行有性分化之前,会在起始前的G1期停止细胞周期进程。CDK抑制剂Rum1和APC/C激活剂Ste9对于这种停滞至关重要,但两者均会被CDK复合物下调。在此,我们表明PP2A-B56对Rum1的稳定和Ste9的激活起作用。在没有PP2A-B56的情况下,细胞无法积累Rum1,这导致CDK活性持续存在、Ste9失活、有丝分裂周期蛋白Cdc13保留,以及在氮饥饿期间细胞周期退出受损。重要的是,Rum1中一个假定的B56相互作用基序的突变重现了这些缺陷。这些结果强调了CDK拮抗磷酸酶在细胞分化、静止状态建立以及癌细胞从中逃逸中的相关性。