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Cytokinesis in Bloodstream Stage Trypanosoma brucei Requires a Family of Katanins and Spastin

机译:布鲁氏锥虫血流阶段的胞质分裂需要一个家族的卡丹宁和斯帕斯汀

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摘要

Microtubule severing enzymes regulate microtubule dynamics in a wide range of organisms and are implicated in important cell cycle processes such as mitotic spindle assembly and disassembly, chromosome movement and cytokinesis. Here we explore the function of several microtubule severing enzyme homologues, the katanins (KAT80, KAT60a, KAT60b and KAT60c), spastin (SPA) and fidgetin (FID) in the bloodstream stage of the African trypanosome parasite, Trypanosoma brucei. The trypanosome cytoskeleton is microtubule based and remains assembled throughout the cell cycle, necessitating its remodelling during cytokinesis. Using RNA interference to deplete individual proteins, we show that the trypanosome katanin and spastin homologues are non-redundant and essential for bloodstream form proliferation. Further, cell cycle analysis revealed that these proteins play essential but discrete roles in cytokinesis. The KAT60 proteins each appear to be important during the early stages of cytokinesis, while downregulation of KAT80 specifically inhibited furrow ingression and SPA depletion prevented completion of abscission. In contrast, RNA interference of FID did not result in any discernible effects. We propose that the stable microtubule cytoskeleton of T. brucei necessitates the coordinated action of a family of katanins and spastin to bring about the cytoskeletal remodelling necessary to complete cell division.
机译:微管切断酶可调节多种生物体中的微管动力学,并参与重要的细胞周期过程,例如有丝分裂纺锤体的组装和拆卸,染色体运动和胞质分裂。在这里,我们探讨了几种微管切断酶同系物,katanins(KAT80,KAT60a,KAT60b和KAT60c),spastin(SPA)和fidgetin(FID)在非洲锥虫寄生虫Trypanosoma brucei的血流阶段的功能。锥虫细胞骨架是基于微管的,并且在整个细胞周期中都保持组装状态,因此在胞质分裂过程中需要对其进行重塑。使用RNA干扰来消耗单个蛋白质,我们显示锥虫小体katanin和spastin同源物是非冗余的,对于血流形式的增殖是必不可少的。此外,细胞周期分析表明,这些蛋白在胞质分裂中起着至关重要但离散的作用。在胞质分裂的早期阶段,每个KAT60蛋白似乎都很重要,而下调KAT80则特异性抑制了犁沟的进入,而SPA的消耗阻止了脱落的完成。相反,FID的RNA干扰没有导致任何明显的影响。我们建议稳定的布鲁氏菌的微管细胞骨架需要一个家族的katanins和spastin的协同作用,以实现完成细胞分裂所必需的细胞骨架重塑。

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