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ProbCons: Probabilistic consistency-based multiple sequence alignment

Genome Research · 2005 · Vol. 15(2) · pp. 330–340
Chuong B. DoMahathi S.P. MahabhashyamMichael BrudnoSerafim Batzoglou

Abstract

To study gene evolution across a wide range of organisms, biologists need accurate tools for multiple sequence alignment of protein families. Obtaining accurate alignments, however, is a difficult computational problem because of not only the high computational cost but also the lack of proper objective functions for measuring alignment quality. In this paper, we introduce probabilistic consistency, a novel scoring function for multiple sequence comparisons. We present ProbCons, a practical tool for progressive protein multiple sequence alignment based on probabilistic consistency, and evaluate its performance on several standard alignment benchmark data sets. On the BAliBASE, SABmark, and PREFAB benchmark alignment databases, ProbCons achieves statistically significant improvement over other leading methods while maintaining practical speed. ProbCons is publicly available as a Web resource.

Genomics and Phylogenetic StudiesBioinformatics and Genomic NetworksMicrobial Metabolic Engineering and BioproductionBenchmark (surveying)Probabilistic logicAlignment-free sequence analysisMultiple sequence alignmentConsistency (knowledge bases)Sequence alignmentSequence (biology)Computer scienceData miningRange (aeronautics)

MeSH terms

AlgorithmsAmino Acid SequenceMolecular Sequence DataSoftwareSoftware ValidationGenetic VariationSequence AlignmentComputational BiologyBenchmarkingDatabases, Protein

Funding

  • National Science Foundation
  • National Institutes of Health
Citations
1,133
FWCI
field-weighted impact
References
72
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References
Error bounds for convolutional codes and an asymptotically optimum decoding algorithm
IEEE Transactions on Information Theory · 1967 · 6,722 citations
Combining evolutionary information and neural networks to predict protein secondary structure
Proteins Structure Function and Bioinformatics · 1994 · 1,462 citations
An improved algorithm for matching biological sequences
Journal of Molecular Biology · 1982 · 1,751 citations
Identification of common molecular subsequences
Journal of Molecular Biology · 1981 · 10,021 citations
The neighbor-joining method: a new method for reconstructing phylogenetic trees.
Molecular Biology and Evolution · 1987 · 60,290 citations
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