Zhou Qing, Gu Jianhua, Lun Zhao-Rong, Ayala Francisco J, Li Ziyin
Department of Microbiology and Molecular Genetics, University of Texas Medical School, Houston, TX 77030;
Electron Microscopy Core, Houston Methodist Hospital Research Institute, Houston, TX 77030;
Proc Natl Acad Sci U S A. 2016 Mar 22;113(12):3287-92. doi: 10.1073/pnas.1601596113. Epub 2016 Feb 29.
Cytokinesis in Trypanosoma brucei, an early branching protozoan, occurs along its longitudinal axis uni-directionally from the anterior tip of the new flagellum attachment zone filament toward the cell's posterior end. However, the underlying mechanisms remain elusive. Here we report that cytokinesis in T. brucei is regulated by a concerted action of Polo-like kinase, Aurora B kinase, and a trypanosome-specific protein CIF1. Phosphorylation of CIF1 by Polo-like kinase targets it to the anterior tip of the new flagellum attachment zone filament, where it subsequently recruits Aurora B kinase to initiate cytokinesis. Consistent with its role, CIF1 depletion inhibits cytokinesis initiation from the anterior end of the cell, but, surprisingly, triggers cytokinesis initiation from the posterior end of the cell, suggesting the activation of an alternative cytokinesis from the opposite cell end. Our results reveal the mechanistic roles of CIF1 and Polo-like kinase in cytokinesis initiation and elucidate the mechanism underlying the recruitment of Aurora B kinase to the cytokinesis initiation site at late anaphase. These findings also delineate a signaling cascade controlling cytokinesis initiation from the anterior end of the cell and uncover a backup cytokinesis that is initiated from the posterior end of the cell when the typical anterior-to-posterior cytokinesis is compromised.
布氏锥虫是一种早期分支的原生动物,其胞质分裂沿纵轴从新鞭毛附着区细丝的前端向后端单向进行。然而,其潜在机制仍不清楚。在此,我们报道布氏锥虫的胞质分裂受波洛样激酶、极光激酶B和一种锥虫特异性蛋白CIF1的协同作用调控。波洛样激酶对CIF1的磷酸化将其靶向新鞭毛附着区细丝的前端,随后它在那里招募极光激酶B以启动胞质分裂。与其作用一致,CIF1的缺失抑制了细胞前端的胞质分裂起始,但令人惊讶的是,却触发了细胞后端的胞质分裂起始,这表明从细胞另一端激活了一种替代性胞质分裂。我们的结果揭示了CIF1和波洛样激酶在胞质分裂起始中的机制作用,并阐明了后期极光激酶B被招募到胞质分裂起始位点的潜在机制。这些发现还描绘了一个控制细胞前端胞质分裂起始的信号级联,并揭示了一种备用胞质分裂,当典型的从前到后的胞质分裂受损时,它从细胞后端启动。