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Multiple sequence alignment with hierarchical clustering

Nucleic Acids Research · 1988 · Vol. 16(22) · pp. 10881–10890
F. Corpet

Abstract

An algorithm is presented for the multiple alignment of sequences, either proteins or nucleic acids, that is both accurate and easy to use on microcomputers. The approach is based on the conventional dynamic-programming method of pairwise alignment. Initially, a hierarchical clustering of the sequences is performed using the matrix of the pairwise alignment scores. The closest sequences are aligned creating groups of aligned sequences. Then close groups are aligned until all sequences are aligned in one group. The pairwise alignments included in the multiple alignment form a new matrix that is used to produce a hierarchical clustering. If it is different from the first one, iteration of the process can be performed. The method is illustrated by an example: a global alignment of 39 sequences of cytochrome c.

Genomics and Phylogenetic StudiesRNA and protein synthesis mechanismsGlycosylation and Glycoproteins ResearchPairwise comparisonAlignment-free sequence analysisBiologyMultiple sequence alignmentHierarchical clusteringStructural alignmentSequence alignmentCluster analysisSequence (biology)Smith–Waterman algorithm

MeSH terms

AlgorithmsAmino Acid SequenceBacteriaBase SequenceCytochrome c GroupMultigene FamilyModels, Genetic
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