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Science 2 August 1996: Vol. 273. no. 5275, pp. 595 - 602 DOI: 10.1126/science.273.5275.595
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Articles
Mapping the Protein Universe
Liisa Holm
and
Chris Sander
The comparison of the three-dimensional shapes of protein molecules
poses a complex algorithmic problem. Its solution provides biologists
with computational tools to organize the rapidly growing set of
thousands of known protein shapes, to identify new types of protein
architecture, and to discover unexpected evolutionary relations,
reaching back billions of years, between protein molecules. Protein
shape comparison also improves tools for identifying gene functions in
genome databases by defining the essential sequence-structure features
of a protein family. Finally, an exhaustive all-on-all shape comparison
provides a map of physical attractor regions in the abstract shape
space of proteins, with implications for the processes of protein
folding and evolution.
The authors are in the European Bioinformatics Institute, European
Molecular Biology Laboratory, Hinxton Hall, Cambridge CB10 1SD, UK.
Read the Full Text
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- Genetic algorithm-based optimization of hydrophobicity tables.
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Bioinformatics
21, 2651-2656
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- CoC: a database of universally conserved residues in protein folds.
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Bioinformatics
21, 2539-2540
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- Optimal Protein Structure Alignment Using Maximum Cliques.
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Operations Research
53, 389-402
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- A glimpse at the organization of the protein universe.
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PNAS
102, 5641-5642
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- Crystal Structure of the Virulence Gene Activator AphA from Vibrio cholerae Reveals It Is a Novel Member of the Winged Helix Transcription Factor Superfamily.
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J. Biol. Chem.
280, 13779-13783
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