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Quantum-Mechanical Structure Optimization of Protein Crystals and Analysis of Interactions in Periodic Systems.

Taiji NakamuraTomoko YokaichiyaDmitri G Fedorov
Published in: The journal of physical chemistry letters (2021)
A fast quantum-mechanical approach, density-functional tight-binding combined with the fragment molecular orbital method and periodic boundary conditions, is used to optimize atomic coordinates and cell parameters for a set of protein crystals: 1ETL, 5OQZ, 3Q8J, 1CBN, and 2VB1. Good agreement between experimental and calculated structures is obtained for both atomic coordinates and cell parameters. Sterical clashes present in the experimental structures are corrected by simulations. The partition analysis is extended to treat periodic boundary conditions and applied to analyze protein-solvent interactions in crystals.
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