Li Ziyin, Umeyama Takashi, Wang Ching C
Department of Pharmaceutical Chemistry, University of California San Francisco, San Francisco, California, United States of America.
PLoS One. 2008;3(11):e3814. doi: 10.1371/journal.pone.0003814. Epub 2008 Nov 26.
Aurora B kinase plays essential roles in mitosis and cytokinesis in eukaryotes. In the procyclic form of Trypanosoma brucei, the Aurora B homolog TbAUK1 regulates mitosis and cytokinesis, phosphorylates the Tousled-like kinase TbTLK1, interacts with two mitotic kinesins TbKIN-A and TbKIN-B and forms a novel chromosomal passenger complex (CPC) with two novel proteins TbCPC1 and TbCPC2. Here we show with time-lapse video microscopy the time course of CPC trans-localization from the spindle midzone in late anaphase to the dorsal side of the cell where the anterior end of daughter cell is tethered, and followed by a glide toward the posterior end to divide the cell, representing a novel mode of cytokinesis in eukaryotes. The three subunits of CPC, TbKIN-B and TbTLK1 interact with one another suggesting a close association among the five proteins. An ablation of TbTLK1 inhibited the subsequent trans-localization of CPC and TbKIN-B, whereas a knockdown of CPC or TbKIN-B disrupted the spindle pole localization of TbTLK1 during mitosis. In the bloodstream form of T. brucei, the five proteins also play essential roles in chromosome segregation and cytokinesis and display subcellular localization patterns similar to that in the procyclic form. The CPC in bloodstream form also undergoes a trans-localization during cytokinesis similar to that in the procyclic form. All together, our results indicate that the five-protein complex CPC-TbTLK1-TbKIN-B plays key roles in regulating chromosome segregation in the early phase of mitosis and that the highly unusual mode of cytokinesis mediated by CPC occurs in both forms of trypanosomes.
极光B激酶在真核生物的有丝分裂和胞质分裂中起着至关重要的作用。在布氏锥虫的前循环形式中,极光B同源物TbAUK1调节有丝分裂和胞质分裂,磷酸化类Tousled激酶TbTLK1,与两种有丝分裂驱动蛋白TbKIN-A和TbKIN-B相互作用,并与两种新蛋白TbCPC1和TbCPC2形成一种新型的染色体乘客复合体(CPC)。在这里,我们通过延时视频显微镜观察到CPC从后期纺锤体中区向细胞背侧(子细胞前端附着的位置)转位的时间进程,随后向细胞后端滑动以分裂细胞,这代表了真核生物中一种新型的胞质分裂模式。CPC的三个亚基、TbKIN-B和TbTLK1相互作用,表明这五种蛋白之间存在紧密联系。TbTLK1的缺失抑制了CPC和TbKIN-B随后的转位,而CPC或TbKIN-B的敲低则破坏了有丝分裂期间TbTLK1在纺锤极的定位。在布氏锥虫的血流形式中,这五种蛋白在染色体分离和胞质分裂中也起着至关重要的作用,并表现出与前循环形式相似的亚细胞定位模式。血流形式中的CPC在胞质分裂期间也会经历类似于前循环形式的转位。总之,我们的结果表明,五蛋白复合体CPC-TbTLK1-TbKIN-B在有丝分裂早期调节染色体分离中起关键作用,并且由CPC介导的高度不寻常的胞质分裂模式在两种形式的锥虫中均会发生。