Ye X S, Xu G, Pu R T, Fincher R R, McGuire S L, Osmani A H, Osmani S A
Weis Center For Research, Geisinger Clinic, Danville, PA 17822-2617.
EMBO J. 1995 Mar 1;14(5):986-94. doi: 10.1002/j.1460-2075.1995.tb07079.x.
Initiation of mitosis in Aspergillus nidulans requires activation of two protein kinases, p34cdc2/cyclin B and NIMA. Forced expression of NIMA, even when p34cdc2 was inactivated, promoted chromatin condensation. NIMA may therefore directly cause mitotic chromosome condensation. However, the mitosis-promoting function of NIMA is normally under control of p34cdc2/cyclin B as the active G2 form of NIMA is hyperphosphorylated and further activated by p34cdc2/cyclin B when cells initiate mitosis. To see the p34cdc2/cyclin B dependent activation of NIMA, okadaic acid had to be added to isolation buffers to prevent dephosphorylation of NIMA during isolation. Hyperphosphorylated NIMA contained the MPM-2 epitope and, in vitro, phosphorylation of NIMA by p34cdc2/cyclin B generated the MPM-2 epitope, suggesting that NIMA is phosphorylated directly by p34cdc2/cyclin B during mitotic initiation. These two kinases, which are both essential for mitotic initiation, are therefore independently activated as protein kinases during G2. Then, to initiate mitosis, we suggest that each activates the other's mitosis-promoting functions. This ensures that cells coordinately activate p34cdc2/cyclin B and NIMA to initiate mitosis only upon completion of all interphase events. Finally, we show that NIMA is regulated through the cell cycle like cyclin B, as it accumulates during G2 and is degraded only when cells traverse mitosis.
构巢曲霉有丝分裂的启动需要激活两种蛋白激酶,即p34cdc2/细胞周期蛋白B和NIMA。即使p34cdc2失活,NIMA的强制表达仍能促进染色质凝聚。因此,NIMA可能直接导致有丝分裂染色体凝聚。然而,NIMA促进有丝分裂的功能通常受p34cdc2/细胞周期蛋白B的控制,因为当细胞启动有丝分裂时,NIMA的活性G2形式会被过度磷酸化,并被p34cdc2/细胞周期蛋白B进一步激活。为了观察NIMA依赖于p34cdc2/细胞周期蛋白B的激活情况,必须在分离缓冲液中添加冈田酸,以防止NIMA在分离过程中去磷酸化。过度磷酸化的NIMA含有MPM-2表位,并且在体外,p34cdc2/细胞周期蛋白B对NIMA的磷酸化产生了MPM-2表位,这表明在有丝分裂启动过程中,NIMA直接被p34cdc2/细胞周期蛋白B磷酸化。因此,这两种对有丝分裂启动都必不可少的激酶,在G2期作为蛋白激酶被独立激活。然后,为了启动有丝分裂,我们认为它们各自激活对方促进有丝分裂的功能。这确保了细胞仅在所有间期事件完成后才协同激活p34cdc2/细胞周期蛋白B和NIMA以启动有丝分裂。最后,我们发现NIMA像细胞周期蛋白B一样在整个细胞周期中受到调控,因为它在G2期积累,并且仅在细胞经历有丝分裂时才会降解。