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Detection Of Gtp-tubulin Conformation In Vivo Reveals A Role For Gtp Remnants In Microtubule Rescues

机译:体内检测Gtp-微管蛋白构象揭示了微管抢救中Gtp残留物的作用

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Microtubules display dynamic instability, with alternating phases of growth and shrinkage separated by catastrophe and rescue events. The guanosine triphosphate (GTP) cap at the growing end of microtubules, whose presence is essential to prevent microtubule catastrophes in vitro, has been difficult to observe in vivo. We selected a recombinant antibody that specifically recognizes GTP-bound tubulin in microtubules and found that GTP-tubulin was indeed present at the plus end of growing microtubules. Unexpectedly, GTP-tubulin remnants were also present in older parts of microtubules, which suggests that GTP hydrolysis is sometimes incomplete during polymerization. Observations in living cells suggested that these GTP remnants may be responsible'for the rescue events in which microtubules recover from catastrophe.
机译:微管表现出动态不稳定性,生长和收缩的交替阶段被灾难和救援事件分隔开。微管的生长末端的三磷酸鸟苷(GTP)帽在体内很难观察到,它的存在对于预防微管灾难是必不可少的。我们选择了一种特异性识别微管中结合GTP的微管蛋白的重组抗体,发现GTP-微管蛋白确实存在于生长中的微管的正末端。出乎意料的是,GTP-微管蛋白残留物也存在于微管的较老部分,这表明GTP水解有时在聚合过程中不完全。在活细胞中的观察结果表明,这些GTP残留物可能是微管从灾难中恢复的抢救事件。

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