Skip NavigationSkip to Content

SymmRef: A flexible refinement method for symmetric multimers

  1. Author:
    Mashiach-Farkash, E.
    Nussinov, R.
    Wolfson, H. J.
  2. Author Address

    [Mashiach-Farkash, E; Wolfson, HJ] Tel Aviv Univ, Raymond & Beverly Sackler Fac Exact Sci, Blavatnik Sch Comp Sci, IL-69978 Tel Aviv, Israel. [Nussinov, R] NCI, Basic Res Program, SAIC Frederick, Ctr Canc Res Nanobiol Program, Frederick, MD 21702 USA. [Nussinov, R] Tel Aviv Univ, Sackler Fac Med, Dept Human Genet & Mol Med, IL-69978 Tel Aviv, Israel.;Wolfson, HJ (reprint author), Tel Aviv Univ, Sch Comp Sci, IL-69978 Tel Aviv, Israel;wolfson@tau.ac.il
    1. Year: 2011
    2. Date: Sep
  1. Journal: Proteins-Structure Function and Bioinformatics
    1. 79
    2. 9
    3. Pages: 2607-2623
  2. Type of Article: Article
  3. ISSN: 0887-3585
  1. Abstract:

    Symmetric protein complexes are abundant in the living cell. Predicting their atomic structure can shed light on the mechanism of many important biological processes. Symmetric docking methods aim to predict the structure of these complexes given the unbound structure of a single monomer, or its model. Symmetry constraints reduce the search-space of these methods and make the prediction easier compared to asymmetric protein-protein docking. However, the challenge of modeling the conformational changes that the monomer might undergo is a major obstacle. In this article, we present SymmRef, a novel method for refinement and reranking of symmetric docking solutions. The method models backbone and side-chain movements and optimizes the rigid-body orientations of the monomers. The backbone movements are modeled by normal modes minimization and the conformations of the side-chains are modeled by selecting optimal rotamers. Since solved structures of symmetric multimers show asymmetric side-chain conformations, we do not use symmetry constraints in the side-chain optimization procedure. The refined models are re-ranked according to an energy score. We tested the method on a benchmark of unbound docking challenges. The results show that the method significantly improves the accuracy and the ranking of symmetric rigid docking solutions. SymmRef is available for download at http://bioinfo3d.cs.tau.ac.il/SymmRef/download.html.

    See More

External Sources

  1. DOI: 10.1002/prot.23082
  2. WOS: 000294611100002

Library Notes

  1. Fiscal Year: FY2011-2012
NCI at Frederick

You are leaving a government website.

This external link provides additional information that is consistent with the intended purpose of this site. The government cannot attest to the accuracy of a non-federal site.

Linking to a non-federal site does not constitute an endorsement by this institution or any of its employees of the sponsors or the information and products presented on the site. You will be subject to the destination site's privacy policy when you follow the link.

ContinueCancel