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Refinement of protein structures in explicit solvent

Proteins Structure Function and Bioinformatics · 2003 · Vol. 50(3) · pp. 496–506
Jens P. LingeMark A. WilliamsChristian A.E.M. SpronkAlexandre M. J. J. BonvinMichaël Nilges

Abstract

We present a CPU efficient protocol for refinement of protein structures in a thin layer of explicit solvent and energy parameters with completely revised dihedral angle terms. Our approach is suitable for protein structures determined by theoretical (e.g., homology modeling or threading) or experimental methods (e.g., NMR). In contrast to other recently proposed refinement protocols, we put a strong emphasis on consistency with widely accepted covalent parameters and computational efficiency. We illustrate the method for NMR structure calculations of three proteins: interleukin-4, ubiquitin, and crambin. We show a comparison of their structure ensembles before and after refinement in water with and without a force field energy term for the dihedral angles; crambin was also refined in DMSO. Our results demonstrate the significant improvement of structure quality by a short refinement in a thin layer of solvent. Further, they show that a dihedral angle energy term in the force field is beneficial for structure calculation and refinement. We discuss the optimal weight for the energy constant for the backbone angle omega and include an extensive discussion of meaning and relevance of the calculated validation criteria, in particular root mean square Z scores for covalent parameters such as bond lengths.

Protein Structure and DynamicsEnzyme Structure and FunctionRNA and protein synthesis mechanismsDihedral angleForce field (fiction)Energy minimizationCrystallographyCovalent bondRoot mean squareProtein structure predictionChemistryAb initioComputational chemistry

MeSH terms

Dimethyl SulfoxideModels, MolecularPlant ProteinsProteinsSolventsWaterMolecular StructureInterleukin-4Nuclear Magnetic Resonance, BiomolecularUbiquitin

Funding

  • Wellcome Trust
  • Nederlandse Organisatie voor Wetenschappelijk Onderzoek
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References
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Proteins Structure Function and Bioinformatics · 1993 · 2,146 citations
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