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Single-Molecule Analysis of the Microtubule Cross-Linking Protein MAP65-1 Reveals a Molecular Mechanism for Contact-Angle-Dependent Microtubule Bundling

机译:微管交联蛋白MAP65-1的单分子分析揭示了接触角依赖性微管捆绑的分子机理。

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摘要

Bundling of microtubules (MTs) is critical for the formation of complex MT arrays. In land plants, the interphase cortical MTs form bundles specifically following shallow-angle encounters between them. To investigate how cells select particular MT contact angles for bundling, we used an in vitro reconstitution approach consisting of dynamic MTs and the MT-cross-linking protein MAP65-1. We found that MAP65-1 binds to MTs as monomers and inherently targets antiparallel MTs for bundling. Dwell-time analysis showed that the affinity of MAP65-1 for antiparallel overlapping MTs is about three times higher than its affinity for single MTs and parallel overlapping MTs. We also found that purified MAP65-1 exclusively selects shallow-angle MT encounters for bundling, indicating that this activity is an intrinsic property of MAP65-1. Reconstitution experiments with mutant MAP65-1 proteins with different numbers of spectrin repeats within the N-terminal rod domain showed that the length of the rod domain is a major determinant of the range of MT bundling angles. The length of the rod domain also determined the distance between MTs within a bundle. Together, our data show that the rod domain of MAP65-1 acts both as a spacer and as a structural element that specifies the MT encounter angles that are conducive for bundling.
机译:微管(MT)的捆绑对于形成复杂的MT阵列至关重要。在陆地植物中,相间皮质MTs尤其在它们之间的浅角度相遇后形成束。为了研究细胞如何选择特定的MT接触角进行捆绑,我们使用了由动态MT和MT交联蛋白MAP65-1组成的体外重组方法。我们发现,MAP65-1作为单体与MT结合,并固有地靶向反平行MT进行捆绑。停留时间分析表明,MAP65-1对反平行重叠MT的亲和力比其对单个MT和平行重叠MT的亲和力高大约三倍。我们还发现,纯化的MAP65-1专门选择浅角MT进行捆绑,表明该活性是MAP65-1的固有特性。用突变的MAP65-1蛋白在N末端杆结构域内具有不同数量的血影蛋白重复序列​​进行的重建实验表明,杆结构域的长度是MT束缚角范围的主要决定因素。杆域的长度还决定了束中MT之间的距离。总之,我们的数据表明MAP65-1的杆域既充当间隔基又充当指定MT发生角度的结构元素,这些角度有利于捆绑。

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