Cryo‐electron microscopy and three‐dimensional reconstruction of actin filaments
- 1 March 1986
- journal article
- Published by Wiley in Journal of Microscopy
- Vol. 141 (3) , 349-360
- https://doi.org/10.1111/j.1365-2818.1986.tb02728.x
Abstract
Actin filaments have been examined by electron microscopy whilst in a frozen‐hydrated state. Filaments embedded in a vitreous water layer are basically similar to those prepared by negative staining and show characteristic helical substructure, where the pitches of the helices are about 70 nm and 6 nm. Variability in spacing between long pitch helix cross‐over points has been observed, which is consistent with intrinsic angular disorder between successive filament subunits. Fourier transforms of the most ordered filaments show four strong layer lines that index as the first, fifth, sixth and seventh orders of a 35 nm repeat. A three‐dimensional helical reconstruction, calculated to a resolution of about 4 nm, shows the individual subunits to be orientated with their long axes roughly perpendicular to the filament axis. Each subunit is somewhat curved and is resolved into two domains. Most connections between successive subunits appear to be made close to the filament axis. We also report on the performance of the specimen holder (Philips PW 5699) used in this work.Keywords
This publication has 21 references indexed in Scilit:
- Three-dimensional structure of unstained, frozen-hydrated extended tails of bacteriophage T4Journal of Molecular Biology, 1985
- Cryo-electron microscopy of virusesNature, 1984
- Structure of the actin molecule determined from electron micrographs of crystalline actin sheets with a tentative alignment of the molecule in the actin filamentJournal of Molecular Biology, 1983
- A model for F-actin derived from image analysis of isolated filamentsJournal of Molecular Biology, 1983
- The Fourier transform of actin and other helical systems with cumulative random angular disorderActa Crystallographica Section A, 1982
- A surveying optical diffractometerJournal of Microscopy, 1981
- Electron Diffraction of Frozen, Hydrated Protein CrystalsScience, 1974
- Reconstruction of three-dimensional images from electron micrographs of structures with helical symmetryJournal of Molecular Biology, 1970
- Axial Period of Actin FilamentsNature, 1967
- Diffraction by helical structuresActa Crystallographica, 1958