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Correlated mutations and residue contacts in proteins

Proteins Structure Function and Bioinformatics · 1994 · Vol. 18(4) · pp. 309–317
Ulrike GöbelChris SanderReinhard SchneiderAlfonso Valencia

Abstract

The maintenance of protein function and structure constrains the evolution of amino acid sequences. This fact can be exploited to interpret correlated mutations observed in a sequence family as an indication of probable physical contact in three dimensions. Here we present a simple and general method to analyze correlations in mutational behavior between different positions in a multiple sequence alignment. We then use these correlations to predict contact maps for each of 11 protein families and compare the result with the contacts determined by crystallography. For the most strongly correlated residue pairs predicted to be in contact, the prediction accuracy ranges from 37 to 68% and the improvement ratio relative to a random prediction from 1.4 to 5.1. Predicted contact maps can be used as input for the calculation of protein tertiary structure, either from sequence information alone or in combination with experimental information.

Protein Structure and DynamicsRNA and protein synthesis mechanismsEnzyme Structure and FunctionResidue (chemistry)ChemistryGeneticsComputational biologyBiologyBiochemistry

MeSH terms

Amino Acid SequenceBiological EvolutionMathematical ComputingModels, GeneticModels, MolecularModels, TheoreticalMolecular Sequence DataMutationProteinsRibonuclease, PancreaticStructure-Activity RelationshipTrypsin InhibitorsSequence AlignmentProtein Structure, SecondaryCrystallography, X-Ray
Citations
886
FWCI
4.94
field-weighted impact
References
17
Percentile
96%
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Citations per year
References
Database of homology‐derived protein structures and the structural meaning of sequence alignment
Proteins Structure Function and Bioinformatics · 1991 · 1,658 citations
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