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The Evolution of Microtubule End-Binding Protein 1 (EB1) and Roles in Regulating Microtubule Behavior

机译:微管末端结合蛋白1(EB1)的演变及其在调控微管行为中的作用

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All organisms must transmit genetic information to offspring through cell division, and mitotic spindle participates in the process. Spindle dynamics through depolymerization or polymerization of microtubules generates the driving force required for chromosome movements in mitosis. To date, studies have shown that microtubule arrays control the directions of cell division and diverse microtubule-associated proteins regulate cell division. But a clear picture of how microtubules and microtubule-associated proteins modulate cell division remains unknown. Depletion of end-binding protein 1 by RNA-mediated inhibition shows that one of the microtubule-associated proteins, end-binding protein 1, plays a crucial role in mitotic spindle formation and promotes microtubule dynamics and is needed for the proper segregation of mitotic chromosomes during anaphase in Drosophila cells. Here, we review the properties of end-binding protein 1 and the roles of end-binding protein 1 in regulating microtubule behavior and in cell cycle.
机译:所有生物都必须通过细胞分裂将遗传信息传递给后代,而有丝分裂纺锤体参与该过程。通过微管解聚或聚合产生的纺锤动力学产生有丝分裂中染色体运动所需的驱动力。迄今为止,研究表明微管阵列控制着细胞分裂的方向,并且各种与微管相关的蛋白质也能调节细胞分裂。但是关于微管和微管相关蛋白如何调节细胞分裂的清晰图景仍然未知。通过RNA介导的抑制作用使末端结合蛋白1耗尽,这表明与微管相关的蛋白质之一,末端结合蛋白1在有丝分裂纺锤体形成中起着至关重要的作用,并促进了微管动力学,是有丝分裂染色体正确分离所必需的。在果蝇细胞后期。在这里,我们审查了末端结合蛋白1的特性以及末端结合蛋白1在调节微管行为和细胞周期中的作用。

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