• DocumentCode
    1196027
  • Title

    Protein Subcomplexes—Molecular Machines With Highly Specialized Functions

  • Author

    Hollunder, Jens ; Beyer, Andreas ; Wilhelm, Thomas

  • Author_Institution
    Leibniz Inst. for Age Res., Fritz Lipmann Inst., Jena
  • Volume
    6
  • Issue
    1
  • fYear
    2007
  • fDate
    3/1/2007 12:00:00 AM
  • Firstpage
    86
  • Lastpage
    93
  • Abstract
    Complex cellular processes are accomplished by the concerted action of hierarchically organized functional modules. Protein complexes are major components which act as highly specialized molecular machines. Here we present a statistical procedure to find insightful substructures in protein complexes based on large-scale protein complex data: we identify statistically significant common protein subcomplexes (SCs) contained in different protein complexes. We analyze recently published data of the two model organisms Saccharomyces cerevisiae (four different data sets) and Escherichia coli, as well as human protein complex data. Our method identifies well-characterized protein assemblies with known functions which act as own functional entities in the cell. In addition, we also identified hitherto unknown functional entities that should be studied experimentally in future. We discuss two typical properties of protein subcomplexes: 1) subcomplexes are enriched with essential proteins (which implies that the whole SCs may be strongly conserved) and 2) SCs are functionally and spatially more homogeneous than the experimentally found protein assemblies. The latter property is exploited to propose functions for so far unknown proteins of S. cerevisiae
  • Keywords
    biology computing; cellular biophysics; microorganisms; molecular biophysics; proteins; statistical analysis; Escherichia coli; Saccharomyces cerevisiae; complex cellular processes; highly specialized functions; large-scale protein complex data; molecular machines; protein subcomplexes; statistical methods; Assembly; Biology computing; Biomedical engineering; Data analysis; Frequency; Humans; Large-scale systems; Organisms; Proteins; Systems biology; Gene annotation; molecular machines; protein complex; protein–protein interaction; Algorithms; Amino Acid Motifs; Computers, Molecular; Nanotechnology; Protein Interaction Mapping; Proteins; Sequence Alignment; Sequence Analysis, Protein; Structure-Activity Relationship;
  • fLanguage
    English
  • Journal_Title
    NanoBioscience, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1241
  • Type

    jour

  • DOI
    10.1109/TNB.2007.891884
  • Filename
    4118118