Protein crystallography at subatomic resolution
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Summary
In this review, a number of methodological and technical improvements in macromolecular crystallography led to the appearance of several protein structures at a level of resolution higher than 0.85 A, and the availability of crystallographic data at this resolution opens wide perspectives for theoretical modelling.
- Type
- article
- Published
- 2004-07-27
- Cited by
- 33
- References
- 139
- OpenAlex
- https://openalex.org/W1964039470
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:120282326
Keywords
Resolution (logic), Subatomic particle, Physics, Measure (data warehouse), Function (biology)
References
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- The detection of sub‐units within the crystallographic asymmetric unit
- Chapter 6. Charge densities from X-ray diffraction data
- A well-behaved electrostatic potential-based method using charge restraints for deriving atomic char
- Topological analysis of experimental electron densities
Cited by
- Comparison of hydrogen determination with X-ray and neutron crystallography in a human aldose reductase–inhibitor complex
- Molecular Dynamics Simulations of RNA Systems
- Charge-density study on cyclosporine A.
- Revised electrostatics from invariom refinement of the 18-residue peptaibol antibiotic trichotoxin A50E
- Unambiguous determination of H-atom positions: comparing results from neutron and high-resolution X-ray crystallography.
- X-ray solution scattering (SAXS) combined with crystallography and computation: defining accurate macromolecular structures, conformations and assemblies in solution.
- Halogen bonding in supramolecular chemistry.
- Towards extracting the charge density from normal-resolution data
- Invariom refinement of a new monoclinic solvate of thiostrepton at 0.64 Å resolution.
- On the reproducibility of protein crystal structures: five atomic resolution structures of trypsin.
- Halogenbrücken in der supramolekularen Chemie
- Joint X-ray and neutron refinement with phenix.refine.
- Recent results on hydrogen and hydration in biology studied by neutron macromolecular crystallography
- Dimeric structure of the N-terminal domain of PriB protein from Thermoanaerobacter tengcongensis solved ab initio.
- Charge-density analysis of a protein structure at subatomic resolution: the human aldose reductase case.
- Structure of acostatin, a dimeric disintegrin from Southern copperhead (Agkistrodon contortrix contortrix), at 1.7 Å resolution
- On the application of an experimental multipolar pseudo-atom library for accurate refinement of small-molecule and protein crystal structures.
- A short guide for molecular dynamics simulations of RNA systems.
- Cryo-EM modeling by the molecular dynamics flexible fitting method
- Introduction and validation of an invariom database for amino-acid, peptide and protein molecules.
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