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Improved joint X-ray and neutron refinement procedure in Phenix

Journal Article · · Acta Crystallographica. Section D. Structural Biology

Neutron diffraction is one of the three crystallographic techniques (X-ray, neutron and electron diffraction) used to determine the atomic structures of molecules. Its particular strengths derive from the fact that H (and D) atoms are strong neutron scatterers, meaning that their positions, and thus protonation states, can be derived from crystallographic maps. However, because of technical limitations and experimental obstacles, the quality of neutron diffraction data is typically much poorer (completeness, resolution and signal to noise) than that of X-ray diffraction data for the same sample. Further, refinement is more complex as it usually requires additional parameters to describe the H (and D) atoms. The increase in the number of parameters may be mitigated by using the `riding hydrogen' refinement strategy, in which the positions of H atoms without a rotational degree of freedom are inferred from their neighboring heavy atoms. However, this does not address the issues related to poor data quality. Therefore, neutron structure determination often relies on the presence of an X-ray data set for joint X-ray and neutron (XN) refinement. In this approach, the X-ray data serve to compensate for the deficiencies of the neutron diffraction data by refining one model simultaneously against the X-ray and neutron data sets. To be applicable, it is assumed that both data sets are highly isomorphous, and preferably collected from the same crystals and at the same temperature. However, the approach has a number of limitations that are discussed in this work by comparing four separately re-refined neutron models. To address the limitations, a new method for joint XN refinement is introduced that optimizes two different models against the different data sets. This approach is tested using neutron models and data deposited in the Protein Data Bank. The efficacy of refining models with H atoms as riding or as individual atoms is also investigated.

Sponsoring Organization:
USDOE
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
2205254
Journal Information:
Acta Crystallographica. Section D. Structural Biology, Journal Name: Acta Crystallographica. Section D. Structural Biology Journal Issue: 12 Vol. 79; ISSN ACSDAD; ISSN 2059-7983
Publisher:
International Union of Crystallography (IUCr)Copyright Statement
Country of Publication:
United Kingdom
Language:
English

References (44)

Near-Atomic Resolution Neutron Crystallography on Perdeuterated Pyrococcus furiosus Rubredoxin: Implication of Hydronium Ions and Protonation State Equilibria in Redox Changes journal December 2012
Neutron structure of type-III antifreeze protein allows the reconstruction of AFP-ice interface journal April 2011
Interactive comparison and remediation of collections of macromolecular structures: Interactive Comparison and Remediation journal November 2017
Many Ways to Derivatize Macromolecules and Their Crystals for Phasing book June 2017
An imaging plate neutron detector
  • Niimura, Nobuo; Karasawa, Yuuko; Tanaka, Inchiro
  • Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, Vol. 349, Issue 2-3 https://doi.org/10.1016/0168-9002(94)91220-3
journal October 1994
[16] SHELXL: High-resolution refinement book January 1997
Implementation of the riding hydrogen model in CCTBX to support the next generation of X-ray and neutron joint refinement in Phenix book February 2020
Neutron crystallography for the elucidation of enzyme catalysis journal December 2021
OneDep: Unified wwPDB System for Deposition, Biocuration, and Validation of Macromolecular Structures in the PDB Archive journal March 2017
Macromolecular room temperature crystallography journal January 2021
Joint X-ray/Neutron Crystallographic Study of HIV-1 Protease with Clinical Inhibitor Amprenavir: Insights for Drug Design journal June 2013
Macromolecular structure phasing by neutron anomalous diffraction journal August 2016
An extended N-H bond, driven by a conserved second-order interaction, orients the flavin N5 orbital in cholesterol oxidase journal January 2017
High-resolution neutron crystallography visualizes an OH-bound resting state of a copper-containing nitrite reductase journal February 2020
Protein crystallography at subatomic resolution journal July 2004
The Protein Data Bank journal January 2000
Protein crystallography with spallation neutrons: the user facility at Los Alamos Neutron Science Center journal January 2004
Bond lengths in organic and metal-organic compounds revisited: X —H bond lengths from neutron diffraction data journal May 2010
A systematic pairwise comparison of geometric parameters obtained by X-ray and neutron diffraction journal October 1986
A new least-squares refinement technique based on the fast Fourier transform algorithm journal September 1978
A procedure for joint refinement of macromolecular structures with X-ray and neutron diffraction data from single crystals journal March 1982
Decacarbonyl-μ-hydrido-μ-vinyl- triangulo -triosmium: a combined X-ray and neutron diffraction study journal August 1978
The accuracy of refined protein structures: comparison of two independently refined models of bovine trypsin journal August 1979
Studies of ribonuclease-A by X-ray and neutron diffraction journal August 1980
Interpretation of ensembles created by multiple iterative rebuilding of macromolecular models journal April 2007
Generalized X-ray and neutron crystallographic analysis: more accurate and complete structures for biological macromolecules journal May 2009
electronic Ligand Builder and Optimization Workbench ( eLBOW ): a tool for ligand coordinate and restraint generation journal September 2009
Features and development of Coot journal March 2010
Joint X-ray and neutron refinement with phenix.refine journal October 2010
Use of knowledge-based restraints in phenix.refine to improve macromolecular refinement at low resolution journal March 2012
Towards automated crystallographic structure refinement with phenix.refine journal March 2012
On the reproducibility of protein crystal structures: five atomic resolution structures of trypsin journal July 2013
Comparison of two crystal structures of TGF-β2: the accuracy of refined protein structures journal January 1994
A new aspect of specific radiation damage: hydrogen abstraction from organic molecules journal February 2009
Perdeuteration: improved visualization of solvent structure in neutron macromolecular crystallography journal November 2014
Refinement of macromolecular structures against neutron data with SHELXL2013 journal December 2013
Large-volume protein crystal growth for neutron macromolecular crystallography journal March 2015
Joint X-ray/neutron structure of Lentinus similis AA9_A at room temperature journal January 2023
Evaluation of models determined by neutron diffraction and proposed improvements to their validation and deposition journal July 2018
Real-space refinement in PHENIX for cryo-EM and crystallography journal May 2018
Macromolecular structure determination using X-rays, neutrons and electrons: recent developments in Phenix journal October 2019
X-Ray, Electron, and Neutron Diffraction journal July 1948
Comparative X-Ray and Neutron Diffraction Study of Bonding Effects in s-Triazine journal December 1967
Biomolecular Crystallography book September 2009

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