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两种动基体特异性驱动蛋白在细胞质分裂和维持血液体锥虫细胞形态中的协同作用。

The cooperative roles of two kinetoplastid-specific kinesins in cytokinesis and in maintaining cell morphology in bloodstream trypanosomes.

机构信息

State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-Sen University, Guangzhou, Guangdong, China ; Department of Microbiology and Molecular Genetics, University of Texas Medical School, Houston, Texas, United States of America.

出版信息

PLoS One. 2013 Sep 12;8(9):e73869. doi: 10.1371/journal.pone.0073869. eCollection 2013.

Abstract

The cytoskeleton of Trypanosoma brucei, a unicellular eukaryote and a parasitic protozoan, is defined by the subpellicular microtubule corset that is arranged underneath the plasma membrane. We recently identified two orphan kinesins, TbKIN-C and TbKIN-D, that cooperate to regulate the organization of the subpellicular microtubule corset and thereby maintain cell morphology in the procyclic form of T. brucei. In this report, we characterize the function of TbKIN-C and TbKIN-D in the bloodstream form of T. brucei and investigate their functional cooperation in both the bloodstream and procyclic forms. TbKIN-C and TbKIN-D form a tight complex in vivo in the bloodstream form. TbKIN-C is strongly enriched at the posterior tip of the cell, whereas TbKIN-D is distributed throughout the cell body at all cell cycle stages. RNAi of TbKIN-C or TbKIN-D in the bloodstream form inhibits cell proliferation and leads to cell death, due to cytokinesis defects. RNAi of TbKIN-C and TbKIN-D also results in defects in basal body segregation, but does not affect the synthesis and segregation of the flagellum and the flagellum attachment zone (FAZ) filament. Knockdown of TbKIN-C and TbKIN-D does not disrupt the organization of the subpellicular microtubule corset, but produces multinucleated cells with an enlarged flagellar pocket and misplaced flagella. Interestingly, depletion of TbKIN-C results in rapid degradation of TbKIN-D and, similarly, knockdown of TbKIN-C destabilizes TbKIN-D, suggesting that formation of TbKIN-C/TbKIN-D complex stabilizes both kinesins and is required for the two kinesins to execute their essential cellular functions. Altogether, our results demonstrate the essential role of the two kinesins in cell morphogenesis and cytokinesis in the bloodstream form and the requirement of heteromeric complex formation for maintaining the stability of the two kinesins.

摘要

布氏锥虫的细胞骨架由位于质膜下的亚膜微管外套定义,布氏锥虫是一种单细胞真核生物和寄生原生动物。我们最近鉴定了两个孤儿驱动蛋白,TbKIN-C 和 TbKIN-D,它们合作调节亚膜微管外套的组织,从而维持布氏锥虫前cyclic 形式的细胞形态。在本报告中,我们描述了 TbKIN-C 和 TbKIN-D 在布氏锥虫血液形式中的功能,并研究了它们在血液和前cyclic 形式中的功能合作。TbKIN-C 和 TbKIN-D 在血液形式中体内形成紧密的复合物。TbKIN-C 在细胞的后尖端强烈富集,而 TbKIN-D 在所有细胞周期阶段都分布在整个细胞体中。血液形式中的 TbKIN-C 或 TbKIN-D 的 RNAi 抑制细胞增殖并导致细胞死亡,这是由于有丝分裂缺陷。TbKIN-C 和 TbKIN-D 的 RNAi 也导致基体分离缺陷,但不影响鞭毛和鞭毛附着区 (FAZ) 丝的合成和分离。TbKIN-C 和 TbKIN-D 的敲低不会破坏亚膜微管外套的组织,但会产生多核细胞,带有扩大的鞭毛口袋和错位的鞭毛。有趣的是,TbKIN-C 的耗竭导致 TbKIN-D 的快速降解,同样,TbKIN-C 的敲低也使 TbKIN-D 不稳定,这表明 TbKIN-C/TbKIN-D 复合物的形成稳定了两个驱动蛋白,并使其执行其基本细胞功能。总之,我们的结果表明,这两个驱动蛋白在血液形式中的细胞形态发生和有丝分裂中起着至关重要的作用,并且异源复合物的形成对于维持两个驱动蛋白的稳定性是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aa2/3772034/58579992b3f0/pone.0073869.g001.jpg

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