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Nek8445, a protein kinase required for microtubule regulation and cytokinesis in Giardia lamblia

机译:Nek8445,MicroTubule调节所需的蛋白激酶和贾贾迪亚羊毛蛋白

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Giardia has 198 Nek kinases whereas humans have only 11. Giardia has a complex microtubule cytoskeleton that includes eight flagella and several unique microtubule arrays that are utilized for parasite attachment and facilitation of rapid mitosis and cytokinesis. The need to regulate these structures may explain the parallel expansion of the number of Nek family kinases. Here we use live and fixed cell imaging to uncover the role of Nek8445 in regulating Giardia cell division. We demonstrate that Nek8445 localization is cell cycle regulated and this kinase has a role in regulating overall microtubule organization. Nek8445 depletion results in short flagella, aberrant ventral disk organization, loss of the funis, defective axoneme exit, and altered cell shape. The axoneme exit defect is specific to the caudal axonemes, which exit from the posterior of the cell, and this defect correlates with rounding of the cell posterior and loss of the funis. Our findings implicate a role for the funis in establishing Giardia’s cell shape and guiding axoneme docking. On a broader scale our results support the emerging view that Nek family kinases have a general role in regulating microtubule organization.
机译:Giardia拥有198 Nek Kinases,而人类只有11. Giardia有一个复杂的微管细胞骨架,包括八个鞭毛和几个独特的微管阵列,用于寄生物质的附着和促进快速有丝分裂和细胞因子。需要调节这些结构的需要解释NEK家族激酶数量的并行扩展。在这里,我们使用Live和固定的细胞成像来揭示NEK845在调节Giardia细胞分裂方面的作用。我们证明NEK845定位是细胞周期调节,并且该激酶具有在调节整个微管组织方面的作用。 Nek8445耗尽导致短鞭毛,异常腹部磁盘组织,丧失损失,轴突缺陷出口和改变的细胞形状。轴突出口缺陷特定于尾部轴突,其从细胞的后部出来,并且这种缺陷与细胞后部和故障丧失的舍入相关。我们的研究结果致力于在建立Giardia的细胞形状和引导Ansoneme对接方面的作用。在更广泛的规模上,我们的结果支持新兴的观点,即Nek Family激酶在调节微管组织方面具有一致作用。

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