Citations
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Magnetite Crystal Orientation in Magnetosome Chains
André Körnig,Michael Winklhofer,Jens Baumgartner,Teresa Perez Gonzalez,Peter Fratzl,Damien Faivre +5 more
TL;DR: Two-dimensional synchrotron X-ray diffraction is applied to cells of magnetotactic bacteria that are pre-aligned with a magnetic field to determine the crystallographic orientation of magnetosomes relative to the chain axis to reveal pronounced fiber textures that can be explained by a strain-specific biological control on crystal orientation at the chain level or by physical alignment effects due to intra-chain magnetic interactions.
Journal ArticleDOI
Aniline–phenol recognition: from solution through supramolecular synthons to cocrystals
TL;DR: NMR studies show the presence of LSAMs in solution and also the sequence of association of hydrogen bonding and π⋯π stacking interations that constitute the LS AMs.
Journal ArticleDOI
Biophysical Characterization of the Unstructured Cytoplasmic Domain of the Human Neuronal Adhesion Protein Neuroligin 3
Aviv Paz,Tzviya Zeev-Ben-Mordehai,Martin Lundqvist,Eilon Sherman,Efstratios Mylonas,Lev Weiner,Gilad Haran,Dmitri I. Svergun,Frans A. A. Mulder,Joel L. Sussman,Israel Silman +10 more
TL;DR: It is shown that the cytoplasmic domain of human neuroligin 3 is intrinsically unstructured, however, several of these techniques indicate that it is not fully extended, but becomes significantly more extended under denaturing conditions.
Journal ArticleDOI
Thermal deformation of cryogenically cooled silicon crystals under intense X-ray beams: measurement and finite-element predictions of the surface shape
Lin Zhang,Manuel Sanchez del Rio,Giulio Monaco,Carsten Detlefs,Thomas Roth,Aleksandr I. Chumakov,Pieter Glatzel +6 more
TL;DR: The shape of cryogenically cooled monochromator crystals deformed by the heat load of the X-ray beam is derived from rocking curve measurements at various vertical positions of a narrow-gap slit downstream from the monochromaator, showing excellent quantitative agreement with experiments.
Journal ArticleDOI
Do we see what we should see? Describing non-covalent interactions in protein structures including precision
TL;DR: The presentation of non-covalent interactions in protein X-ray crystal structures needs to routinely include their atomic precision, as detailed here; a user knowledge base for these precisions with examples is also offered.
References
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Journal ArticleDOI
The Protein Data Bank
Helen M. Berman,John D. Westbrook,Zukang Feng,Gary L. Gilliland,Talapady N. Bhat,Helge Weissig,Ilya N. Shindyalov,Philip E. Bourne +7 more
TL;DR: The goals of the PDB are described, the systems in place for data deposition and access, how to obtain further information and plans for the future development of the resource are described.
Journal ArticleDOI
Crystal structure refinement with SHELXL
TL;DR: New features added to the refinement program SHELXL since 2008 are described and explained.
Journal ArticleDOI
Coot: model-building tools for molecular graphics.
Paul Emsley,Kevin Cowtan +1 more
TL;DR: CCP4mg is a project that aims to provide a general-purpose tool for structural biologists, providing tools for X-ray structure solution, structure comparison and analysis, and publication-quality graphics.
Journal ArticleDOI
PHENIX: a comprehensive Python-based system for macromolecular structure solution
Paul D. Adams,Paul D. Adams,Pavel V. Afonine,Gábor Bunkóczi,Vincent B. Chen,Ian W. Davis,Nathaniel Echols,Jeffrey J. Headd,Li-Wei Hung,Gary J. Kapral,Ralf W. Grosse-Kunstleve,Airlie J. McCoy,Nigel W. Moriarty,Robert D. Oeffner,Randy J. Read,David S. Richardson,Jane S. Richardson,Thomas C. Terwilliger,Peter H. Zwart +18 more
TL;DR: The PHENIX software for macromolecular structure determination is described and its uses and benefits are described.
Journal ArticleDOI
Phaser crystallographic software
Airlie J. McCoy,Ralf W. Grosse-Kunstleve,Paul D. Adams,Martyn Winn,Laurent C. Storoni,Randy J. Read +5 more
TL;DR: A description is given of Phaser-2.1: software for phasing macromolecular crystal structures by molecular replacement and single-wavelength anomalous dispersion phasing.