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Contacts-based prediction of binding affinity in protein–protein complexes

eLife · 2015 · Vol. 4 · pp. e07454–e07454
Anna VangoneAlexandre M. J. J. Bonvin

Abstract

Almost all critical functions in cells rely on specific protein-protein interactions. Understanding these is therefore crucial in the investigation of biological systems. Despite all past efforts, we still lack a thorough understanding of the energetics of association of proteins. Here, we introduce a new and simple approach to predict binding affinity based on functional and structural features of the biological system, namely the network of interfacial contacts. We assess its performance against a protein-protein binding affinity benchmark and show that both experimental methods used for affinity measurements and conformational changes have a strong impact on prediction accuracy. Using a subset of complexes with reliable experimental binding affinities and combining our contacts and contact-types-based model with recent observations on the role of the non-interacting surface in protein-protein interactions, we reach a high prediction accuracy for such a diverse dataset outperforming all other tested methods.

Protein Structure and DynamicsBioinformatics and Genomic NetworksComputational Drug Discovery MethodsAffinitiesProtein–protein interactionBinding affinitiesComputational biologyBenchmark (surveying)Surface proteinPlasma protein bindingStructural biologyProtein structureChemistry

MeSH terms

Molecular BiologyProtein BindingComputational BiologyProtein Interaction Maps

Funding

  • Seventh Framework Programme
Citations
646
FWCI
10.39
field-weighted impact
References
59
Percentile
99%
vs. same field & year
Citations per year
References
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Proteins Structure Function and Bioinformatics · 2002 · 1,239 citations
CAPRI: A Critical Assessment of PRedicted Interactions
Proteins Structure Function and Bioinformatics · 2003 · 707 citations
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Contacts-based prediction of binding affinity in protein–protein complexes · Scinovex