Display Settings:

Format

Send to:

Choose Destination
    BMC Bioinformatics. 2008 May 12;9:234.

    Comprehensive inventory of protein complexes in the Protein Data Bank from consistent classification of interfaces.

    Source

    Computational Science and Mathematics Division and BioEnergy Science Center, Oak Ridge National Laboratory, PO Box 2008, MS 6173, Oak Ridge, TN 37831, USA. bordner.andrew@mayo.edu

    Abstract

    BACKGROUND:

    Protein-protein interactions are ubiquitous and essential for all cellular processes. High-resolution X-ray crystallographic structures of protein complexes can reveal the details of their function and provide a basis for many computational and experimental approaches. Differentiation between biological and non-biological contacts and reconstruction of the intact complex is a challenging computational problem. A successful solution can provide additional insights into the fundamental principles of biological recognition and reduce errors in many algorithms and databases utilizing interaction information extracted from the Protein Data Bank (PDB).

    RESULTS:

    We have developed a method for identifying protein complexes in the PDB X-ray structures by a four step procedure: (1) comprehensively collecting all protein-protein interfaces; (2) clustering similar protein-protein interfaces together; (3) estimating the probability that each cluster is relevant based on a diverse set of properties; and (4) combining these scores for each PDB entry in order to predict the complex structure. The resulting clusters of biologically relevant interfaces provide a reliable catalog of evolutionary conserved protein-protein interactions. These interfaces, as well as the predicted protein complexes, are available from the Protein Interface Server (PInS) website (see Availability and requirements section).

    CONCLUSION:

    Our method demonstrates an almost two-fold reduction of the annotation error rate as evaluated on a large benchmark set of complexes validated from the literature. We also estimate relative contributions of each interface property to the accurate discrimination of biologically relevant interfaces and discuss possible directions for further improving the prediction method.

    PMID:
    18474114
    [PubMed - indexed for MEDLINE]
    PMCID:
    PMC2413245
    Free PMC Article

    Images from this publication.See all images (5) Free text

    Figure 1
    Figure 3
    Figure 5
    Figure 2
    Figure 4

      Supplemental Content

      Icon for BioMed Central Icon for PubMed Central

      Save items

      loading

      Recent activity

      Your browsing activity is empty.

      Activity recording is turned off.

      Turn recording back on

      See more...
      Write to the Help Desk