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3D structure of eukaryotic flagella in a quiescent state revealed by cryo-electron tomography

机译:冷冻电子断层扫描显示处于静止状态的真核鞭毛的3D结构

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We have used cryo-electron tomography to investigate the 3D structure and macromolecular organization of intact, frozen-hydra ted sea urchin sperm flagella in a quiescent state. The tomographic reconstructions provide information at a resolution better than 6 nm about the in situ arrangements of macromolecules that are key for flagellar motility. We have visualized the hep-tameric rings of the motor domains in the outer dynein arm complex and determined that they lie parallel to the plane that contains the axes of neighboring flagellar microtubules. Both the material associated with the central pair of microtubules and the radial spokes display a plane of symmetry that helps to explain the planar beat pattern of these flagella. Cryo-electron tomography has proven to be a powerful technique for helping us understand the relationships between flagellar structure and function and the design of macromolecular machines in situ.
机译:我们已使用冷冻电子断层扫描技术来研究处于静止状态的完整,冷冻水化海胆精子鞭毛的3D结构和大分子组织。层析成像重建技术可提供有关鞭毛运动关键的大分子原位排列的信息,分辨率高于6 nm。我们已经可视化了外部达因臂复合物中的运动域的七聚体环,并确定它们平行于包含相邻鞭毛微管轴的平面。与中央微管对相关的材料和径向辐条均显示出对称平面,有助于解释这些鞭毛的平面节拍模式。低温电子断层扫描已被证明是一种强大的技术,可帮助我们了解鞭毛结构和功能与原位大分子机器设计之间的关系。

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