Hammarton Tansy C, Clark Jade, Douglas Fiona, Boshart Michael, Mottram Jeremy C
Wellcome Centre for Molecular Parasitology, Anderson College, University of Glasgow, 56 Dumbarton Road, Glasgow, G11 6NU, United Kingdom.
J Biol Chem. 2003 Jun 20;278(25):22877-86. doi: 10.1074/jbc.M300813200. Epub 2003 Apr 7.
African trypanosomes have a tightly coordinated cell cycle to effect efficient segregation of their single organelles, the nucleus, flagellum, and kinetoplast. To investigate cell cycle control in trypanosomes, a mitotic cyclin gene (CYC6) has been identified in Trypanosoma brucei. We show that CYC6 forms an active kinase complex with CRK3, the trypanosome CDK1 homologue, in vivo. Using RNA interference, we demonstrate that absence of CYC6 mRNA results in a mitotic block and growth arrest in both the insect procyclic and mammalian bloodstream forms. In the procyclic form, CYC6 RNA interference generates anucleate cells with a single kinetoplast, whereas in bloodstream form trypanosomes, cells with one nucleus and multiple kinetoplasts are observed. Fluorescence-activated cell sorting analysis shows that bloodstream but not procyclic trypanosomes are able to reinitiate nuclear S phase in the absence of mitosis. Taken together, these data show that procyclic trypanosomes can undergo cytokinesis without completion of mitosis, whereas a mitotic block in bloodstream form trypanosomes inhibits cytokinesis but not kinetoplast replication and segregation nor an additional round of nuclear DNA synthesis. This indicates that there are fundamental differences in cell cycle controls between life cycle forms of T. brucei and that key cell cycle checkpoints present in higher eukaryotes are absent from trypanosomes.
非洲锥虫具有紧密协调的细胞周期,以实现其单个细胞器(细胞核、鞭毛和动基体)的有效分离。为了研究锥虫的细胞周期调控,已在布氏锥虫中鉴定出一个有丝分裂周期蛋白基因(CYC6)。我们发现,CYC6在体内与锥虫CDK1同源物CRK3形成活性激酶复合物。利用RNA干扰技术,我们证明,CYC6 mRNA的缺失会导致昆虫前循环型和哺乳动物血流型的有丝分裂阻滞和生长停滞。在前循环型中,CYC6 RNA干扰会产生具有单个动基体的无核细胞,而在血流型锥虫中,则会观察到具有一个细胞核和多个动基体的细胞。荧光激活细胞分选分析表明,血流型而非前循环型锥虫能够在没有有丝分裂的情况下重新启动核S期。综上所述,这些数据表明,前循环型锥虫可以在不完成有丝分裂的情况下进行胞质分裂,而血流型锥虫中的有丝分裂阻滞会抑制胞质分裂,但不会抑制动基体的复制、分离以及新一轮的核DNA合成。这表明布氏锥虫生命周期各形式之间的细胞周期调控存在根本差异,并且锥虫缺乏高等真核生物中存在的关键细胞周期检查点。