mRNA: guanine-N7 cap methyltransferases: identification of novel members of the family, evolutionary analysis, homology modeling, and analysis of sequence-structure-function relationships

被引:29
作者
Bujnicki, Janusz M. [1 ]
Feder, Marcin [1 ,2 ]
Radlinska, Monika [2 ]
Rychlewski, Leszek [1 ,3 ]
机构
[1] Int Inst Cell & Mol Biol, Bioinformat Lab, Ul Ks Trojdena 4, PL-02109 Warsaw, Poland
[2] Warsaw Univ, Inst Microbiol, PL-02093 Warsaw, Poland
[3] BioInfoBank, PL-60744 Poznan, Poland
关键词
D O I
10.1186/1471-2105-2-2
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Background: The 5'-terminal cap structure plays an important role in many aspects of mRNA metabolism. Capping enzymes encoded by viruses and pathogenic fungi are attractive targets for specific inhibitors. There is a large body of experimental data on viral and cellular methyltransferases (MTases) that carry out guanine-N7 (cap 0) methylation, including results of extensive mutagenesis. However, a crystal structure is not available and cap 0 MTases are too diverged from other MTases of known structure to allow straightforward homology-based interpretation of these data. Results: We report a 3D model of cap 0 MTase, developed using sequence-to-structure threading and comparative modeling based on coordinates of the glycine N-methyltransferase. Analysis of the predicted structural features in the phylogenetic context of the cap 0 MTase family allows us to rationalize most of the experimental data available and to propose potential binding sites. We identified a case of correlated mutations in the cofactor-binding site of viral MTases that may be important for the rational drug design. Furthermore, database searches and phylogenetic analysis revealed a novel subfamily of hypothetical MTases from plants, distinct from "orthodox" cap 0 MTases. Conclusions: Computational methods were used to infer the evolutionary relationships and predict the structure of Eukaryotic cap MTase. Identification of novel cap MTase homologs suggests candidates for cloning and biochemical characterization, while the structural model will be useful in designing new experiments to better understand the molecular function of cap MTases.
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页数:12
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共 52 条
  • [1] Alexandrov N N, 1996, Pac Symp Biocomput, P53
  • [2] Gapped BLAST and PSI-BLAST: a new generation of protein database search programs
    Altschul, SF
    Madden, TL
    Schaffer, AA
    Zhang, JH
    Zhang, Z
    Miller, W
    Lipman, DJ
    [J]. NUCLEIC ACIDS RESEARCH, 1997, 25 (17) : 3389 - 3402
  • [3] ALTSCHUL SF, 1990, J MOL BIOL, V215, P403, DOI 10.1006/jmbi.1990.9999
  • [4] [Anonymous], J MOL BIOL
  • [5] [Anonymous], ADENOSYLMETHIONINE D
  • [6] 5'-TERMINAL CAP STRUCTURE IN EUKARYOTIC MESSENGER RIBONUCLEIC-ACIDS
    BANERJEE, AK
    [J]. MICROBIOLOGICAL REVIEWS, 1980, 44 (02) : 175 - 205
  • [7] RNA methylation under heat shock control
    Bügl, H
    Fauman, EB
    Staker, BL
    Zheng, FH
    Kushner, SR
    Saper, MA
    Bardwell, JCA
    Jakob, U
    [J]. MOLECULAR CELL, 2000, 6 (02) : 349 - 360
  • [8] Phylogenomic analysis of 16S rRNA:(guanine-N2) methyltransferases suggests new family members and reveals highly conserved motifs and a domain structure similar to other nucleic acid amino-methyltransferases
    Bujnicki, JM
    [J]. FASEB JOURNAL, 2000, 14 (14) : 2365 - 2368
  • [9] LiveBench-1: Continuous benchmarking of protein structure prediction servers
    Bujnicki, JM
    Elofsson, A
    Fischer, D
    Rychlewski, L
    [J]. PROTEIN SCIENCE, 2001, 10 (02) : 352 - 361
  • [10] BUJNICKI JM, 1999, SILICO BIOL, V1, P1