4.6 Article

Proteinprotein interactions: General trends in the relationship between binding affinity and interfacial buried surface area

期刊

PROTEIN SCIENCE
卷 22, 期 4, 页码 510-515

出版社

WILEY-BLACKWELL
DOI: 10.1002/pro.2230

关键词

proteinprotein interaction; hydrophobicity; surface energy density; hot spot; dissociation constant; buried surface area

资金

  1. Raymond and Beverly Sackler Institute for Biological, Physical, and Engineering Sciences

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Proteinprotein interactions play key roles in many cellular processes and their affinities and specificities are finely tuned to the functions they perform. Here, we present a study on the relationship between binding affinity and the size and chemical nature of proteinprotein interfaces. Our analysis focuses on heterodimers and includes curated structural and thermodynamic data for 113 complexes. We observe a direct correlation between binding affinity and the amount of surface area buried at the interface. For a given amount of surface area buried, the binding affinity spans four orders of magnitude in terms of the dissociation constant (Kd). Across the entire dataset, we observe no obvious relationship between binding affinity and the chemical composition of the interface. We also calculate the free energy per unit surface area buried, or surface energy density, of each heterodimer. For interfacial surface areas between 500 and 2000 angstrom 2, the surface energy density decreases as the buried surface area increases. As the buried surface area increases beyond about 2000 angstrom 2, the surface energy density levels off to a constant value. We believe that these analyses and data will be useful for researchers with an interest in understanding, designing or inhibiting proteinprotein interfaces.

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