Deriving structural and functional insights from a ligand-based hierarchical classification of G protein-coupled receptors

被引:29
作者
Attwood, TK
Croning, MDR
Gaulton, A
机构
[1] Univ Manchester, Sch Biol Sci, Manchester M13 9PT, Lancs, England
[2] European Bioinformat Inst, EMBL Outstn, Cambridge CB10 1SD, England
来源
PROTEIN ENGINEERING | 2002年 / 15卷 / 01期
关键词
drug targets; fingerprint database; motif analysis; multi-gene families; receptor subtypes;
D O I
10.1093/protein/15.1.7
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
G protein-coupled receptors (GPCRs) constitute the largest known family of cell-surface receptors. With hundreds of members populating the rhodopsin-like GPCR superfamily and many more awaiting discovery in the human genome, they are of interest to the pharmaceutical industry because of the opportunities they afford for yielding potentially lucrative drug targets. Typical sequence analysis strategies for identifying novel GPCRs tend to involve similarity searches using standard primary database search tools. This will reveal the most similar sequence, generally without offering any insight into its family or superfamily relationships. Conversely, searches of most 'pattern' or family databases are likely to identify the superfamily, but not the closest matching subtype. Here we describe a diagnostic resource that allows identification of GPCRs in a hierarchical fashion, based principally upon their ligand preference. This resource forms part of the PRINTS database, which now houses similar to250 GPCR-specific fingerprints (http:// www.bioinf.man.ac.uk/dbbrowser/gpcrPRINTS/). This collection of fingerprints is able to provide more sensitive diagnostic opportunities than have been realized by related approaches and is currently the only diagnostic tool for assigning GPCR subtypes. Mapping such fingerprints on to three-dimensional GPCR models offers powerful insights into the structural and functional determinants of subtype specificity.
引用
收藏
页码:7 / 12
页数:6
相关论文
共 24 条
  • [1] ALTSCHUL SF, 1990, J MOL BIOL, V215, P403, DOI 10.1006/jmbi.1990.9999
  • [2] FINGERPRINTING G-PROTEIN-COUPLED RECEPTORS
    ATTWOOD, TK
    FINDLAY, JBC
    [J]. PROTEIN ENGINEERING, 1994, 7 (02): : 195 - 203
  • [3] PRINTS-S: the database formerly known as PRINTS
    Attwood, TK
    Croning, MDR
    Flower, DR
    Lewis, AP
    Mabey, JE
    Scordis, P
    Selley, JN
    Wright, W
    [J]. NUCLEIC ACIDS RESEARCH, 2000, 28 (01) : 225 - 227
  • [4] A compendium of specific motifs for diagnosing GPCR subtypes
    Attwood, TK
    [J]. TRENDS IN PHARMACOLOGICAL SCIENCES, 2001, 22 (04) : 162 - 165
  • [5] DESIGN OF A DISCRIMINATING FINGERPRINT FOR G-PROTEIN-COUPLED RECEPTORS
    ATTWOOD, TK
    FINDLAY, JBC
    [J]. PROTEIN ENGINEERING, 1993, 6 (02): : 167 - 176
  • [6] The SWISS-PROT protein sequence database and its supplement TrEMBL in 2000
    Bairoch, A
    Apweiler, R
    [J]. NUCLEIC ACIDS RESEARCH, 2000, 28 (01) : 45 - 48
  • [7] Bateman A, 2004, NUCLEIC ACIDS RES, V32, pD138, DOI [10.1093/nar/gkp985, 10.1093/nar/gkh121, 10.1093/nar/gkr1065]
  • [8] TinyGRAP database: a bioinformatics tool to mine G-protein-coupled receptor mutant data
    Beukers, MW
    Kristiansen, K
    Ijzerman, AP
    Edvardsen, O
    [J]. TRENDS IN PHARMACOLOGICAL SCIENCES, 1999, 20 (12) : 475 - 477
  • [9] Molecular tinkering of G protein-coupled receptors: an evolutionary success
    Bockaert, J
    Pin, JP
    [J]. EMBO JOURNAL, 1999, 18 (07) : 1723 - 1729
  • [10] Etzold T, 1996, METHOD ENZYMOL, V266, P114