Structure of purple membrane from halobacterium halobium: recording, measurement and evaluation of electron micrographs at 3.5 Å resolution
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Summary
Electron micrographs of the purple membrane have been recorded using liquid nitrogen and liquid helium cooling on three cryoelectron microscopes and the amplitudes and phases of the Fourier components from the distortion-corrected image of the crystal are analysed.
- Type
- article
- Published
- 1986-01-01
- Cited by
- 698
- References
- 36
- OpenAlex
- https://openalex.org/W2093650342
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:97429981
Keywords
Optics, Tilt (camera), Resolution (logic), Crystal (programming language), Fourier transform
References
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- High resolution cold stage for the JEOL 100B and 100C electron microscopes.
- Structure of the purple membrane.
- Reconstruction of imperfectly ordered zinc-induced tubulin sheets using cross-correlation and real space averaging.
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- Superconducting lens design
- Electron microscopy of tobacco mosaic virus under conditions of minimal beam exposure.
- Improvements in electron microscopy by application of superconductivity.
- Tilted specimen in the electron microscope: A simple specimen holder and the calculation of tilt angles for crystalline specimens
- Reconstruction of glutamine synthetase using computer averaging.
- The importance of beam alignment and crystal tilt in high resolution electron microscopy
- A posteriori correction of object tilt for the CTEM
- Coma-free alignment of high-resolution electron microscopes with the aid of optical diffractograms
Cited by
- 3D reconstruction from the Fourier transform of a single superlattice image of an oblique section.
- The electron microscopy of the nicotinic acetylcholine receptor.
- Introduction to the computer image processing of electron micrographs of two-dimensionally ordered biological structures.
- A new generation of the IMAGIC image processing system.
- Visualization of beta-sheets and side-chain clusters in two-dimensional periodic arrays of streptavidin on phospholipid monolayers by electron crystallography.
- Three-dimensional distortion correction applied to tomographic reconstructions of sectioned crystals.
- Structure of TolC, the outer membrane component of the bacterial type I efflux system, derived from two‐dimensional crystals
- Projection structure of VP6, the rotavirus inner capsid protein, and comparison with bluetongue VP7.
- Structure and hydration of the M-state of the bacteriorhodopsin mutant D96N studied by neutron diffraction.
- Structure of the Ca2+ pump of sarcoplasmic reticulum: a view along the lipid bilayer at 9-A resolution.
- Visualization of the binding site for the transcript cleavage factor GreB on Escherichia coli RNA polymerase.
- Characterization of the low magnification performance of a Philips CM300-FEG.
- The projection structure of the membrane protein microsomal glutathione transferase at 3 A resolution as determined from two-dimensional hexagonal crystals.
- The structure of aquaporin-1 at 4.5-A resolution reveals short alpha-helices in the center of the monomer.
- The three‐dimensional map of microsomal glutathione transferase 1 at 6 Å resolution
- Electron crystallography reveals the structure of metarhodopsin I
- High-resolution powder diffraction study of purple membrane with a large Guinier-type camera.
- Structure of the exosporium and sublayers of spores of the Bacillus cereus family revealed by electron crystallography
- Ultrathin conductive carbon nanomembranes as support films for structural analysis of biological specimens.
- The reaction centre from green sulphur bacteria: progress towards structural elucidation
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