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EB1 Recognizes the Nucleotide State of Tubulin in the Microtubule Lattice

机译:EB1识别微管格子中微管蛋白的核苷酸状态。

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摘要

Plus-end-tracking proteins (+TIPs) are localized at the fast-growing, or plus end, of microtubules, and link microtubule ends to cellular structures. One of the best studied +TIPs is EB1, which forms comet-like structures at the tips of growing microtubules. The molecular mechanisms by which EB1 recognizes and tracks growing microtubule ends are largely unknown. However, one clue is that EB1 can bind directly to a microtubule end in the absence of other proteins. Here we use an in vitro assay for dynamic microtubule growth with two-color total-internal-reflection-fluorescence imaging to investigate binding of mammalian EB1 to both stabilized and dynamic microtubules. We find that under conditions of microtubule growth, EB1 not only tip tracks, as previously shown, but also preferentially recognizes the GMPCPP microtubule lattice as opposed to the GDP lattice. The interaction of EB1 with the GMPCPP microtubule lattice depends on the E-hook of tubulin, as well as the amount of salt in solution. The ability to distinguish different nucleotide states of tubulin in microtubule lattice may contribute to the end-tracking mechanism of EB1.
机译:正端追踪蛋白(+ TIP)位于微管的快速增长或正端,并将微管端连接到细胞结构。 EB1是研究最深入的+ TIP之一,它在微管生长的尖端形成类似彗星的结构。 EB1识别并追踪生长的微管末端的分子机制尚不清楚。但是,一个线索是,在没有其他蛋白质的情况下,EB1可以直接与微管末端结合。在这里,我们使用一种动态检测微管生长的体外分析方法,采用两色全内反射荧光成像技术来研究哺乳动物EB1与稳定微管和动态微管的结合。我们发现,在微管生长的条件下,EB1不仅如前所示具有尖端轨迹,而且还优先识别GMPCPP微管晶格而不是GDP晶格。 EB1与GMPCPP微管晶格的相互作用取决于微管蛋白的E钩以及溶液中的盐量。区分微管格子中微管蛋白不同核苷酸状态的能力可能有助于EB1的末端追踪机制。

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