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Accurate Prediction of Docked Protein Structure Similarity

  • University of Massachusetts Boston

Research output: Contribution to journalArticlepeer-review

Abstract

One of the major challenges for protein-protein docking methods is to accurately discriminate nativelike structures. The protein docking community agrees on the existence of a relationship between various favorable intermolecular interactions (e.g. Van der Waals, electrostatic, desolvation forces, etc.) and the similarity of a conformation to its native structure. Different docking algorithms often formulate this relationship as a weighted sum of selected terms and calibrate their weights against specific training data to evaluate and rank candidate structures. However, the exact form of this relationship is unknown and the accuracy of such methods is impaired by the pervasiveness of false positives. Unlike the conventional scoring functions, we propose a novel machine learning approach that not only ranks the candidate structures relative to each other but also indicates how similar each candidate is to the native conformation. We trained the AccuRMSD neural network with an extensive dataset using the back-propagation learning algorithm. Our method achieved predicting RMSDs of unbound docked complexes with 0.4Å error margin.

Original languageEnglish
Pages (from-to)892-904
Number of pages13
JournalJournal of Computational Biology
Volume22
Issue number9
DOIs
StatePublished - Sep 1 2015

ASJC Scopus Subject Areas

  • Modeling and Simulation
  • Molecular Biology
  • Genetics
  • Computational Mathematics
  • Computational Theory and Mathematics

Keywords

  • machine learning
  • neural networks
  • protein docking and refinement
  • RMSD prediction
  • scoring functions

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