Single-particle based helical reconstruction—how to make the most of real and Fourier space
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- Type
- article
- Published
- 2015-06-15
- Cited by
- 20
- References
- 94
- Access
- Open access
- OpenAlex
- https://openalex.org/W1788622424
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:46567231
Keywords
Fourier transform, Single particle analysis, Cryo-electron microscopy, Fourier series, Resolution (logic)
References
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- Structural biology using electrons and X-rays : an introduction for biologists
- Biophysical Electron Microscopy: Basic Concepts and Modern Techniques
- Unstained microtubules studied by cryo-electron microscopy. Substructure, supertwist and disassembly.
- Structural analysis of polymers of sickle cell hemoglobin. I. Sickle hemoglobin fibers.
- Three-dimensional structure of human γ-secretase
- Electron microscopy of metal-shadowed and negatively stained microtubule protein. Structure of the 30 S oligomer.
- Reconstruction of Helical Filaments and Tubes
- Fourier-Bessel Reconstruction of Helical Assemblies
- 2.2 Å resolution cryo-EM structure of β-galactosidase in complex with a cell-permeant inhibitor
- Structure of a Bacterial Dynamin-like Protein Lipid Tube Provides a Mechanism For Assembly and Membrane Curving
- Image analysis of helical objects: the Brandeis Helical Package.
- Paired β-sheet structure of an Aβ(1-40) amyloid fibril revealed by electron microscopy
- Beam-Induced Motion of Vitrified Specimen on Holey Carbon Film
- Noise bias in the refinement of structures derived from single particles.
- Structure of β-galactosidase at 3.2-Å resolution obtained by cryo-electron microscopy
- RESOLUTION OF THE SUBSTRUCTURE OF TOBACCO MOSAIC VIRUS IN THE ELECTRON MICROSCOPE.
Cited by
- Cryo-EM Structure Determination Using Segmented Helical Image Reconstruction.
- In vitro assembly of the Rous Sarcoma Virus capsid protein into hexamer tubes under physiological conditions
- In vitro assembly of the Rous Sarcoma Virus capsid protein into hexamer tubes at physiological temperature
- Unique architecture of thermophilic archaeal virus APBV1 and its genome packaging
- Automated tracing of helical assemblies from electron cryo-micrographs
- Modeling the Structure of Helical Assemblies with Experimental Constraints in Rosetta.
- Contrasting Modes of Self-Assembly and Hydrogen-Bonding Heterogeneity in Chlorosomes of Chlorobaculum tepidum
- Molecular Insight in the Optical Response of Tubular Chlorosomal Assemblies
- Ambidextrous helical nanotubes from self-assembly of designed helical hairpin motifs
- Liquid-liquid phase transitions and amyloid aggregation in proteins related to cancer and neurodegenerative diseases.
- Three-dimensional reconstruction of individual helical nano-filament structures from atomic force microscopy topographs
- The molecular architecture of vimentin filaments
- Python‐based Helix Indexer: A graphical user interface program for finding symmetry of helical assembly through Fourier–Bessel indexing of electron microscopic data
- Structures of synthetic helical filaments and tubes based on peptide and peptido-mimetic polymers
- Emerging trends in cryo-EM-based structural studies of neuropathological amyloids.
- Structural biology of microbial gas vesicles: historical milestones and current knowledge
- Functional redundancy revealed by the deletion of the mimivirus GMC-oxidoreductase genes
- The giant Mimivirus 1.2 Mb genome is elegantly organized into a 30 nm helical protein shield
- Functional redundancy revealed by the deletion of the mimivirus GMC-oxidoreductase genes
- Three-dimensional reconstruction of individual helical nano-filament structures from atomic force microscopy topographs
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