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Microtubule Inner Proteins: A Meshwork of Luminal Proteins Stabilizing the Doublet Microtubule

机译:微管内蛋白:稳定双胞胎蛋白的腔蛋白的网状作用

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摘要

Motile eukaryotic cilia and flagella are hair-like organelles responsible for cell motility and mucociliary clearance. Using cryo-electron tomography, it has been shown that the doublet microtubule, the cytoskeleton core of the cilia and flagella, has microtubule inner protein structures binding periodically inside its lumen. More recently, single-particle cryo-electron microscopy analyses of isolated doublet microtubules have shown that microtubule inner proteins form a meshwork inside the doublet microtubule. High-resolution structures revealed new types of interactions between the microtubule inner proteins and the tubulin lattice. In addition, they offered insights into the potential roles of microtubule inner proteins in the stabilization and assembly of the doublet microtubule. Herein, we review our new insights into microtubule inner proteins from the doublet microtubule together with the current body of literature on microtubule inner proteins.
机译:Motile真核芝麻和鞭毛是毛发的细胞器,负责细胞运动和粘蛋白间隙。 已经表明,使用冷冻电子断层扫描,纤毛和鞭毛的胞间微管,细胞骨架核心,具有微管内蛋白质结构,周期性地结合其内腔。 最近,分离双胞胎微管的单粒子冷冻电子显微镜分析表明,微管内蛋白在双孔微管内形成啮盘包。 高分辨率结构揭示了微管内蛋白和管蛋白晶格之间的新型相互作用。 此外,它们还提供了对微管内蛋白在双重微管稳定和组装中的潜在作用的洞察力。 在此,我们将新的见解与双胞胎微管中的微管内蛋白与微管内蛋白的当前文献一起审查进入微管内蛋白。

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