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αTAT1 controls longitudinal spreading of acetylation marks from open microtubules extremities

机译:αTAT1控制来自开放微管末端的乙酰化标记的纵向扩散

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摘要

Acetylation of the lysine 40 of α-tubulin (K40) is a post-translational modification occurring in the lumen of microtubules (MTs) and is controlled by the α-tubulin acetyl-transferase αTAT1. How αTAT1 accesses the lumen and acetylates α-tubulin there has been an open question. Here, we report that acetylation starts at open ends of MTs and progressively spreads longitudinally from there. We observed acetylation marks at the open ends of in vivo MTs re-growing after a Nocodazole block, and acetylated segments growing in length with time. Bias for MTs extremities was even more pronounced when using non-dynamic MTs extracted from HeLa cells. In contrast, K40 acetylation was mostly uniform along the length of MTs reconstituted from purified tubulin in vitro. Quantitative modelling of luminal diffusion of αTAT1 suggested that the uniform acetylation pattern observed in vitro is consistent with defects in the MT lattice providing lateral access to the lumen. Indeed, we observed that in vitro MTs are permeable to macromolecules along their shaft while cellular MTs are not. Our results demonstrate αTAT1 enters the lumen from open extremities and spreads K40 acetylation marks longitudinally along cellular MTs. This mode of tip-directed microtubule acetylation may allow for selective acetylation of subsets of microtubules.
机译:α-微管蛋白(K40)的赖氨酸40的乙酰化是发生在微管(MTs)内腔中的翻译后修饰,并受α-微管蛋白乙酰转移酶αTAT1的控制。 αTAT1如何进入管腔并乙酰化α-微管蛋白一直是一个悬而未决的问题。在这里,我们报道乙酰化开始于MTs的开放末端,并从那里开始纵向扩展。我们观察到诺考达唑阻滞后,在体内MT的开口端重新生长的乙酰化标记,并且乙酰化片段的长度随时间增长。使用从HeLa细胞提取的非动态MT时,MT末端的偏倚更为明显。相反,在体外,从纯化的微管蛋白重构的MTs长度上,K40乙酰化作用几乎是均匀的。 αTAT1的管腔扩散的定量模型表明,体外观察到的均匀乙酰化模式与MT晶格中的缺陷相一致,从而提供了侧向进入管腔的通道。实际上,我们观察到体外MTs沿其轴可穿透大分子,而细胞MT则不可。我们的结果表明,αTAT1从四肢开放进入管腔,并沿细胞MT纵向扩散K40乙酰化标记。尖端定向的微管乙酰化的这种模式可以允许微管子集的选择性乙酰化。

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