articleJournal of Chemical Information and ModelingJun 26, 2013Closed access

Improved Docking of Polypeptides with Glide

Schrodinger (United States)

PubMed
Indexed incrossrefpubmed

Abstract

Predicting the binding mode of flexible polypeptides to proteins is an important task that falls outside the domain of applicability of most small molecule and protein-protein docking tools. Here, we test the small molecule flexible ligand docking program Glide on a set of 19 non-α-helical peptides and systematically improve pose prediction accuracy by enhancing Glide sampling for flexible polypeptides. In addition, scoring of the poses was improved by post-processing with physics-based implicit solvent MM-GBSA calculations. Using the best RMSD among the top 10 scoring poses as a metric, the success rate (RMSD ≤ 2.0 Å for the interface backbone atoms) increased from 21% with default Glide SP settings to 58%…

Citation impact

1,287
total citations
FWCI
21.60
Percentile
100%
References
33
Citations per year

Authors

4

Topics & keywords

Keywords
  • Docking (animal)
  • Computer science
  • Test set
  • Molecular dynamics
  • Protein–ligand docking
  • Virtual screening
  • Chemistry
  • Computational biology
No related works found for this paper.