Roshak A K, Capper E A, Imburgia C, Fornwald J, Scott G, Marshall L A
Department of Immunology, SmithKline Beecham Phamaceuticals, King of Prussia, PA 19406, USA.
Cell Signal. 2000 Jun;12(6):405-11. doi: 10.1016/s0898-6568(00)00080-2.
Entry into mitosis by mammalian cells is triggered by the activation of the cdc2/cyclin B holoenzyme. This is accomplished by the specific dephosphorylation of key residues by the cdc25C phosphatase. The polo-like kinases are a family of serine/threonine kinases which are also implicated in the control of mitotic events, but their exact regulatory mechanism is not known. Recently, a Xenopus homologue, PLX1, was reported to phosphorylate and activate cdc25, leading to activation of cdc2/cyclin B. Jurkat T leukemia cells were chemically arrested and used to verify that PLK protein expression and its phosphorylation state is regulated with respect to cell cycle phase (i.e., protein is undetectable at G1/S, accumulates at S phase and is modified at G2/M). Herein, we show for the first time that endogenous human PLK protein immunoprecipitated from the G2/M-arrested Jurkat cells directly phosphorylates human cdc25C. In addition, we demonstrate that recombinant human (rh) PLK also phosphorylates rhcdc25C in a time- and concentration-dependent manner. Phosphorylation of endogenous cdc25C and recombinant cdc25C by PLK resulted in the activation of the phosphatase as assessed by dephosphorylation of cdc2/cyclin B. These data are the first to demonstrate that human PLK is capable of phosphorylating and positively regulating human cdc25C activity, allowing cdc25C to dephosphorylate inactive cdc2/cyclin B. As this event is required for cell cycle progression, we define at least one key regulatory mode of action for human PLK in the initiation of mitosis.
哺乳动物细胞进入有丝分裂是由cdc2/细胞周期蛋白B全酶的激活所触发的。这是通过cdc25C磷酸酶对关键残基进行特异性去磷酸化来实现的。Polo样激酶是丝氨酸/苏氨酸激酶家族,也参与有丝分裂事件的控制,但其确切的调节机制尚不清楚。最近,有报道称非洲爪蟾的同源物PLX1可磷酸化并激活cdc25,从而导致cdc2/细胞周期蛋白B的激活。Jurkat T白血病细胞被化学阻滞,并用于验证PLK蛋白表达及其磷酸化状态是否随细胞周期阶段而调节(即,在G1/S期无法检测到该蛋白,在S期积累,并在G2/M期发生修饰)。在此,我们首次表明,从G2/M期阻滞的Jurkat细胞中免疫沉淀的内源性人PLK蛋白可直接磷酸化人cdc25C。此外,我们还证明重组人(rh)PLK也以时间和浓度依赖性方式磷酸化rhcdc25C。通过cdc2/细胞周期蛋白B的去磷酸化评估,PLK对内源性cdc25C和重组cdc25C的磷酸化导致了磷酸酶的激活。这些数据首次证明人PLK能够磷酸化并正向调节人cdc25C的活性,使cdc25C能够去磷酸化无活性的cdc2/细胞周期蛋白B。由于这一事件是细胞周期进展所必需的,我们确定了人PLK在有丝分裂起始中的至少一种关键调节作用模式。