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XMAP215 is a processive microtubule polymerase.

机译:XMAP215是一种进行性微管聚合酶。

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Fast growth of microtubules is essential for rapid assembly of the microtubule cytoskeleton during cell proliferation and differentiation. XMAP215 belongs to a conserved family of proteins that promote microtubule growth. To determine how XMAP215 accelerates growth, we developed a single-molecule assay to visualize directly XMAP215-GFP interacting with dynamic microtubules. XMAP215 binds free tubulin in a 1:1 complex that interacts with the microtubule lattice and targets the ends by a diffusion-facilitated mechanism. XMAP215 persists at the plus end for many rounds of tubulin subunit addition in a form of "tip tracking." These results show that XMAP215 is a processive polymerase that directly catalyzes the addition of up to 25 tubulin dimers to the growing plus end. Under some circumstances XMAP215 can also catalyze the reverse reaction, namely microtubule shrinkage. The similarities between XMAP215 and formins, actin polymerases, suggest that processive tip tracking is a common mechanism for stimulating the growth of cytoskeletal polymers.
机译:微管的快速生长对于在细胞增殖和分化过程中快速组装微管细胞骨架至关重要。 XMAP215属于保守的蛋白质家族,可促进微管生长。为了确定XMAP215如何加速生长,我们开发了一种单分子测定法以直接可视化XMAP215-GFP与动态微管的相互作用。 XMAP215以1:1的复合物结合游离的微管蛋白,该复合物与微管晶格相互作用,并通过扩散促进机制靶向末端。 XMAP215始终以“尖端跟踪”的形式在许多回合的微管蛋白亚基添加过程中始终处于上升状态。这些结果表明,XMAP215是一种过程性聚合酶,可直接催化多达25个微管蛋白二聚体添加至生长末端。在某些情况下,XMAP215还可以催化逆反应,即微管收缩。 XMAP215与formins,肌动蛋白聚合酶之间的相似性表明,持续性尖端追踪是刺激细胞骨架聚合物生长的常见机制。

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