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PMID: 1603814 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Detection of native-like models for amino acid sequences of unknown three-dimensional structure in a data base of known protein conformations.

Proteins ·Vol. 13 ·No. 3 ·1992-07-00 ·Pages 258-71

Sippl MJ, Weitckus S

Abstract

We present an approach which can be used to identify native-like folds in a data base of protein conformations in the absence of any sequence homology to proteins in the data base. The method is based on a knowledge-based force field derived from a set of known protein conformations. A given sequence is mounted on all conformations in the data base and the associated energies are calculated. Using several conformations and sequences from the globin family we show that the native conformation is identified correctly. In fact the resolution of the force field is high enough to discriminate between a native fold and several closely related conformations. We then apply the procedure to several globins of known sequence but unknown three dimensional structure. The homology of these sequences to globins of known structures in the data base ranges from 49 to 17%. With one exception we find that for all globin sequences one of the known globin folds is identified as the most favorable conformation. These results are obtained using a force field derived from a data base devoid of globins of known structure. We briefly discuss useful applications in protein structural research and future development of our approach.

MeSH Terms
Algorithms Amino Acid Sequence Databases, Factual Globins/chemistry Hemoglobins/chemistry Models, Molecular Molecular Sequence Data Protein Conformation Sequence Alignment
Chemicals
Hemoglobins Globins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Sippl M J
Department of Biochemistry, University of Salzburg, Austria.
Weitckus S
Article Info
Journal
Proteins
Abbr.
Proteins
ISSN
0887-3585
Published
1992-07-00
Pages
258-71
Language
English
Region
United States
NLM ID
8700181
Subset
IM
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