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      Empirical solvent-mediated potentials hold for both intra-molecular and inter-molecular inter-residue interactions.

      Protein Science : A Publication of the Protein Society
      Amino Acid Sequence, Models, Chemical, Models, Molecular, Models, Theoretical, Molecular Sequence Data, Proteins, chemistry, Solvents, Thermodynamics

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          Abstract

          Whether knowledge-based intra-molecular inter-residue potentials are valid to represent inter-molecular interactions taking place at protein-protein interfaces has been questioned in several studies. Differences in the chain connectivity effect and in residue packing geometry between interfaces and single chain monomers have been pointed out as possible sources of distinct energetics for the two cases. In the present study, the interfacial regions of protein-protein complexes are examined to extract inter-molecular inter-residue potentials, using the same statistical methods as those previously adopted for intra-molecular residue pairs. Two sets of energy parameters are derived, corresponding to solvent-mediation and "average residue" mediation. The former set is shown to be highly correlated (correlation coefficient 0.89) with that previously obtained for inter-residue interactions within single chain monomers, while the latter exhibits a weaker correlation (0.69) with its intra-molecular counterpart. In addition to the close similarity of intra- and inter-molecular solvent-mediated potentials, they are shown to be significantly more residue-specific and thereby discriminative compared to the residue-mediated ones, indicating that solvent-mediation plays a major role in controlling the effective inter-residue interactions, either at interfaces, or within single monomers. Based on this observation, a reduced set of energy parameters comprising 20 one-body and 3 two-body terms is proposed (as opposed to the 20 x 20 tables of inter-residue potentials), which reproduces the conventional 20 x 20 tables with a correlation coefficient of 0.99.

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          Author and article information

          Journal
          9865952
          2143898
          10.1002/pro.5560071211

          Chemistry
          Amino Acid Sequence,Models, Chemical,Models, Molecular,Models, Theoretical,Molecular Sequence Data,Proteins,chemistry,Solvents,Thermodynamics

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