Empirical estimation of the energetic contribution of individual interface residues in structures of protein-protein complexes
Abstract
We report a simple algorithm to scan interfaces in protein-protein complexes for identifying binding 'hot spots'. The change in side-chain solvent accessible area (ΔASA) of interface residues has been related to change in binding energy due to mutating interface residues to Ala (ΔΔGX→ALA) based on two criteria - hydrogen bonding across the interface and location in the interface core - both of which are major determinants in specific, high-affinity binding. These relationships are used to predict the energetic contribution of individual interface residues. The predictions are tested against 462 experimental X → ALA mutations from 28 interfaces with an average unsigned error of 1.04 kcal/mol. More than 80% of interface hot spots (with experimental ΔΔG ≥ 2 kcal/mol) could be identified as being energetically important. From the experimental values, Asp, Lys, Tyr and Trp are found to contribute most of the binding energy, burying >45 Å2 on average. The method described here would be useful to understand and interfere with protein interactions by assessing the energetic importance of individual interface residues.
URI
1. Full Text Link ->http://link.springer.com/article/10.1007%2Fs10822-009-9282-3?LI=true#page-1
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2. Scopus : Citation Link ->
http://www.scopus.com/record/display.url?eid=2-s2.0-69249212584&origin=resultslist&sort=plf-f&src=s&st1=Empirical+estimation+of+the+energetic+contribution+of+individual+interface+residues+in+structures+of+protein-protein+complexes&sid=PGelv2ou5BZZvh0g2dinoSF%3a350&sot=b&sdt=b&sl=141&s=TITLE-ABS-KEY%28Empirical+estimation+of+the+energetic+contribution+of+individual+interface+residues+in+structures+of+protein-protein+complexes%29&relpos=0&relpos=0&searchTerm=TITLE-ABS-KEY%28Empirical%20estimation%20of%20the%20energetic%20contribution%20of%20individual%20interface%20residues%20in%20structures%20of%20protein-protein%20complexes%29
