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Subnanometre-resolution structure of the doublet microtubule reveals new classes of microtubule-associated proteins

机译:双峰微管的亚域分辨率结构显示新的微管相关蛋白类别

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摘要

Cilia are ubiquitous, hair-like appendages found in eukaryotic cells that carry out functions of cell motility and sensory reception. Cilia contain an intriguing cytoskeletal structure, termed the axoneme that consists of nine doublet microtubules radially interlinked and longitudinally organized in multiple specific repeat units. Little is known, however, about how the axoneme allows cilia to be both actively bendable and sturdy or how it is assembled. To answer these questions, we used cryo-electron microscopy to structurally analyse several of the repeating units of the doublet at sub-nanometre resolution. This structural detail enables us to unambiguously assign α- and β-tubulins in the doublet microtubule lattice. Our study demonstrates the existence of an inner sheath composed of different kinds of microtubule inner proteins inside the doublet that likely stabilizes the structure and facilitates the specific building of the B-tubule.
机译:纤毛是普遍存在的,如毛发状阑尾,在真核细胞中发现,进行细胞运动和感官接收的功能。 Cilia含有一种有趣的细胞骨架结构,称为轴突,该结构由径向互连的径向互连和纵向组织以多种特定重复单元组成的轴突。然而,关于轴突允许如何使纤毛是可积极弯曲和坚固的或者它是如何组装的。为了回答这些问题,我们使用了低温电子显微镜来在亚纳米分辨率下在结构上分析双纳米分辨率的多个重复单元。该结构细节使我们能够明确地将双胞胎微管晶格中的α-和β-管蛋白分配。我们的研究表明,在双峰内部的不同种类的微管内蛋白组成的内鞘,其可能稳定结构并促进B小管的特定建筑物。

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