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Effects of tubulin acetylation and tubulin acetyltransferase binding on microtubule structure

机译:微管蛋白乙酰化和微管蛋白乙酰转移酶结合对微管结构的影响

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摘要

Tubulin undergoes posttranslational modifications proposed to specify microtubule subpopulations for particular functions. Most of these modifications occur on the C-termini of tubulin and may directly affect the binding of microtubule-associated proteins (MAPs) or motors. Acetylation of Lys-40 on α-tubulin is unique in that it is located on the luminal surface of microtubules, away from the interaction sites of most MAPs and motors. We investigate whether acetylation alters the architecture of microtubules or the conformation of tubulin, using cryo–electron microscopy (cryo-EM). No significant changes are observed based on protofilament distributions or microtubule helical lattice parameters. Furthermore, no clear differences in tubulin structure are detected between cryo-EM reconstructions of maximally deacetylated or acetylated microtubules. Our results indicate that the effect of acetylation must be highly localized and affect interaction with proteins that bind directly to the lumen of the microtubule. We also investigate the interaction of the tubulin acetyltransferase, αTAT1, with microtubules and find that αTAT1 is able to interact with the outside of the microtubule, at least partly through the tubulin C-termini. Binding to the outside surface of the microtubule could facilitate access of αTAT1 to its luminal site of action if microtubules undergo lateral opening between protofilaments.
机译:微管蛋白经过翻译后修饰,被提议为特定功能指定微管亚群。这些修饰大多数发生在微管蛋白的C末端,可能直接影响微管相关蛋白(MAPs)或运动蛋白的结合。 Lys-40在α-微管蛋白上的乙酰化是独特的,因为它位于微管的管腔表面,远离大多数MAP和马达的相互作用部位。我们使用冷冻-电子显微镜(cryo-EM)研究乙酰化是否改变了微管的结构或微管蛋白的构象。基于原丝分布或微管螺旋晶格参数没有观察到明显的变化。此外,最大脱乙酰基或乙酰化微管的冷冻-EM重建之间未检测到微管蛋白结构的明显差异。我们的结果表明,乙酰化作用必须高度局限,并影响与直接与微管腔结合的蛋白质的相互作用。我们还研究了微管蛋白乙酰转移酶αTAT1与微管的相互作用,发现αTAT1能够与微管外部相互作用,至少部分通过微管蛋白C末端相互作用。如果微管在原丝之间发生侧向开口,则与微管外表面的结合可促进αTAT1进入其管腔作用部位。

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