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Fold homology detection using sequence fragment composition profiles of proteins

  • Armando D. Solis
  • , Shalom R. Rackovsky

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

The effectiveness of sequence alignment in detecting structural homology among protein sequences decreases markedly when pairwise sequence identity is low (the so-called "twilight zone" problem of sequence alignment). Alternative sequence comparison strategies able to detect structural kinship among highly divergent sequences are necessary to address this need. Among them are alignment-free methods, which use global sequence properties (such as amino acid composition) to identify structural homology in a rapid and straightforward way. We explore the viability of using tetramer sequence fragment composition profiles in finding structural relationships that lie undetected by traditional alignment. We establish a strategy to recast any given protein sequence into a tetramer sequence fragment composition profile, using a series of amino acid clustering steps that have been optimized for mutual information. Our method has the effect of compressing the set of 160,000 unique tetramers (if using the 20-letter amino acid alphabet) into a more tractable number of reduced tetramers (~15-30), so that a meaningful tetramer composition profile can be constructed. We test remote homology detection at the topology and fold superfamily levels using a comprehensive set of fold homologs, culled from the CATH database that share low pairwise sequence similarity. Using the receiver-operating characteristic measure, we demonstrate potentially significant improvement in using information-optimized reduced tetramer composition, over methods relying only on the raw amino acid composition or on traditional sequence alignment, in homology detection at or below the "twilight zone".

Original languageEnglish
Pages (from-to)2745-2756
Number of pages12
JournalProteins: Structure, Function and Bioinformatics
Volume78
Issue number13
DOIs
StatePublished - Oct 2010

Keywords

  • Alignment-free methods
  • CATH
  • Homology detection
  • Information theory
  • Reduced amino acid alphabet
  • Sequence alignment

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