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PMID: 11835510 Published · ppublish English Journal Article

Why protein R-factors are so large: a self-consistent analysis.

Proteins ·Vol. 46 ·No. 4 ·2002-03-01 ·Pages 345-54

Vitkup D, Ringe D, Karplus M, Petsko GA

Abstract

The R-factor and R-free are commonly used to measure the quality of protein models obtained in X-ray crystallography. Well-refined protein structures usually have R-factors in the range of 20-25%, whereas intrinsic errors in the experimental data are usually around 5%. We use molecular dynamics simulations to perform a self-consistent analysis by which we determine the major factors contributing to large values of protein R-factors. The analysis shows that significant R-factor values can arise from the use of isotropic B-factors to model anisotropic protein motions and from coordinate errors. Even in the absence of coordinate errors, the use of isotropic B-factors can cause the R-factors to be around 10%; for coordinate errors smaller than 0.2 A, the two errors types make similar contributions. The inaccuracy of the energy function used and multistate protein dynamics are unlikely to make significant contributions to the large R-factors.

MeSH Terms
Animals Anisotropy Computer Simulation Crystallography, X-Ray/methods Models, Theoretical Myoglobin/chemistry Plant Proteins/chemistry Protein Conformation Proteins/chemistry Reproducibility of Results
Chemicals
Myoglobin Plant Proteins Proteins crambin protein, Crambe abyssinica
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Vitkup Dennis
Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, MA 02454-9110, USA.
Ringe Dagmar
Karplus Martin
Petsko Gregory A
Article Info
Journal
Proteins
Abbr.
Proteins
ISSN
1097-0134
Published
2002-03-01
Pages
345-54
Language
English
Region
United States
NLM ID
8700181
Subset
IM
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