Articles
The effects of rigid motions on elastic network model force constants
Article first published online: 7 JAN 2012
DOI: 10.1002/prot.24014
Copyright © 2011 Wiley Periodicals, Inc.
Issue

Proteins: Structure, Function, and Bioinformatics
Volume 80, Issue 4, pages 1133–1142, April 2012
Additional Information
How to Cite
Lezon, T. R. (2012), The effects of rigid motions on elastic network model force constants. Proteins, 80: 1133–1142. doi: 10.1002/prot.24014
Publication History
- Issue published online: 2 MAR 2012
- Article first published online: 7 JAN 2012
- Accepted manuscript online: 10 DEC 2011 05:06AM EST
- Manuscript Accepted: 6 DEC 2011
- Manuscript Revised: 15 NOV 2011
- Manuscript Received: 7 JUL 2011
Funded by
- NIH. Grant Numbers: R01GM086238-03, UL1RR024153-05
- Abstract
- Article
- References
- Cited By
Keywords:
- protein dynamics;
- coarse-grained;
- B factors;
- crystal packing;
- anisotropic temperature factors
Abstract
Elastic network models provide an efficient way to quickly calculate protein global dynamics from experimentally determined structures. The model's single parameter, its force constant, determines the physical extent of equilibrium fluctuations. The values of force constants can be calculated by fitting to experimental data, but the results depend on the type of experimental data used. Here, we investigate the differences between calculated values of force constants and data from NMR and X-ray structures. We find that X-ray B factors carry the signature of rigid-body motions, to the extent that B factors can be almost entirely accounted for by rigid motions alone. When fitting to more refined anisotropic temperature factors, the contributions of rigid motions are significantly reduced, indicating that the large contribution of rigid motions to B factors is a result of over-fitting. No correlation is found between force constants fit to NMR data and those fit to X-ray data, possibly due to the inability of NMR data to accurately capture protein dynamics. Proteins 2012; © 2011 Wiley Periodicals, Inc.

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