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Updated: Aug 15, 2026

Using Tomoauto: A Protocol for High-throughput Automated Cryo-electron Tomography
Published on: January 30, 2016
3D structure of eukaryotic flagella in a quiescent state revealed by cryo-electron tomography
Daniela Nicastro1, J Richard McIntosh, Wolfgang Baumeister
1Abteilung Molekulare Strukturbiologie, Max-Planck-Institut für Biochemie, 82152 Martinsried, Germany. nicastro@colorado.edu
Abstract:
We have used cryo-electron tomography to investigate the 3D structure and macromolecular organization of intact, frozen-hydrated 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 heptameric 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.
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