Guo N, Faller D V, Denis G V
Cancer Research Center, Boston University School of Medicine, Room L910, Boston, MA, USA.
J Cell Sci. 2000 Sep;113 ( Pt 17)(0 17):3085-91. doi: 10.1242/jcs.113.17.3085.
RING3 is a novel protein kinase linked to human leukaemia. Its Drosophila homologue female sterile homeotic is a developmental regulator that interacts genetically with trithorax, a human homologue of which is also associated with leukaemia. The RING3 structure contains two mutually related bromodomains that probably assist in the remodelling of chromatin and thereby affect transcription. Consistent with this hypothesis, a RING3-like protein has been identified in the mouse Mediator complex, where it is associated with transcription factors. We show that, whilst RING3 is constitutively localised to the nucleus of exponentially growing HeLa cells, it is delocalised throughout serum-starved fibroblasts. We use immunostaining and confocal microscopy to demonstrate that RING3 translocates to the fibroblast nucleus upon serum stimulation. After translocation, RING3 participates in nuclear protein complexes that include E2F proteins; it transactivates the promoters of several important mammalian cell cycle genes that are dependent on E2F, including dihydrofolate reductase, cyclin D1, cyclin A and cyclin E. We use site-directed mutagenesis of a putative nuclear localisation motif to show that the activation-induced nuclear localisation and consequent transcriptional activity of RING3 depends on a monopartite, classical nuclear localisation sequence. These observations refine and extend the mechanism by which RING3 contributes to E2F-regulated cell cycle progression. Deregulation of this mechanism may be leukaemogenic.
RING3是一种与人类白血病相关的新型蛋白激酶。其果蝇同源物雌性不育同源异型蛋白是一种发育调节因子,与三体胸蛋白发生遗传相互作用,三体胸蛋白的人类同源物也与白血病相关。RING3结构包含两个相互关联的溴结构域,可能有助于染色质重塑,从而影响转录。与这一假设一致,在小鼠中介体复合物中鉴定出一种类似RING3的蛋白,它与转录因子相关。我们发现,虽然RING3在指数生长的HeLa细胞核中组成性定位,但在血清饥饿的成纤维细胞中它会发生移位。我们使用免疫染色和共聚焦显微镜来证明,血清刺激后RING3会转位到成纤维细胞核中。转位后,RING3参与包括E2F蛋白在内的核蛋白复合物;它激活几个依赖E2F的重要哺乳动物细胞周期基因的启动子,包括二氢叶酸还原酶、细胞周期蛋白D1、细胞周期蛋白A和细胞周期蛋白E。我们对一个假定的核定位基序进行定点诱变,以表明RING3的激活诱导核定位及其随后的转录活性取决于一个单部分的经典核定位序列。这些观察结果完善并扩展了RING3促进E2F调节的细胞周期进程的机制。这种机制的失调可能会导致白血病。