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Human Fidgetin is a microtubule severing the enzyme and minus-end depolymerase that regulates mitosis

机译:人Fidgetin是一种微管可切断调节有丝分裂的酶和负端解聚酶

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摘要

Fidgetin is a member of the AAA protein superfamily with important roles in mammalian development. Here we show that human Fidgetin is a potent microtubule severing and depolymerizing the enzyme used to regulate mitotic spindle architecture, dynamics and anaphase A. In vitro, recombinant human Fidgetin severs taxol-stabilized microtubules along their length and promotes depolymerization, primarily from their minus-ends. In cells, human Fidgetin targets to centrosomes, and its depletion with siRNA significantly reduces the velocity of poleward tubulin flux and anaphase A chromatid-to-pole motion. In addition, the loss of Fidgetin induces a microtubule-dependent enlargement of mitotic centrosomes and an increase in the number and length of astral microtubules. Based on these data, we propose that human Fidgetin actively suppresses microtubule growth from and attachment to centrosomes.
机译:Fidgetin是AAA蛋白超家族的成员,在哺乳动物发育中具有重要作用。在这里,我们显示人类Fidgetin是有效的微管,可切断和解聚用于调节有丝分裂纺锤体结构,动力学和后期A的酶。在体外,重组人Fidgetin沿其长度切断紫杉醇稳定的微管并促进解聚,主要是从其负-结束。在细胞中,人Fidgetin靶向中心体,并且其siRNA的消耗会显着降低极向微管蛋白通量和后期A染色单体到极点运动的速度。此外,Fidgetin的丢失会引起有丝分裂中心体的微管依赖性增大,以及星形微管的数量和长度增加。基于这些数据,我们建议人类Fidgetin积极抑制中心体微管的生长和附着。

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