MuSiC: a tool for multiple sequence alignment with constraints

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MuSiC: a tool for multiple sequence alignment with constraints

SUMMARY MuSiC is a web server to perform the constrained alignment of a set of sequences, such that the user-specified residues/nucleotides are aligned with each other. The input of the MuSiC system consists of a set of protein/DNA/RNA sequences and a set of user-specified constraints, each with a fragment of residue/nucleotide that (approximately) appears in all input sequences. The output of ...

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RE-MuSiC: a tool for multiple sequence alignment with regular expression constraints

RE-MuSiC is a web-based multiple sequence alignment tool that can incorporate biological knowledge about structure, function, or conserved patterns regarding the sequences of interest. It accepts amino acid or nucleic acid sequences and a set of constraints as inputs. The constraints are pattern descriptions, instead of exact positions of fragments to be aligned together. The output is an align...

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A tool for multiple sequence alignment.

Multiple sequence alignment can be a useful technique for studying molecular evolution and analyzing sequence-structure relationships. Until recently, it has been impractical to apply dynamic programming, the most widely accepted method for producing pairwise alignments, to comparisons of more than three sequences. We describe the design and application of a tool for multiple alignment of amino...

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Multiple sequence alignment with user-defined constraints

In many situations, automated multi-alignment programs are not able to correctly align families of nucleic acid or protein sequences. Difficult cases comprise not only distantly related sequences but also tandem duplications independent of their evolutionary age. Frequently, additional biological information is available that establishes homologies at least in parts of the sequences based on st...

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A memory-efficient algorithm for multiple sequence alignment with constraints

MOTIVATION Recently, the concept of the constrained sequence alignment was proposed to incorporate the knowledge of biologists about structures/functionalities/consensuses of their datasets into sequence alignment such that the user-specified residues/nucleotides are aligned together in the computed alignment. The currently developed programs use the so-called progressive approach to efficientl...

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ژورنال

عنوان ژورنال: Bioinformatics

سال: 2004

ISSN: 1367-4803,1460-2059

DOI: 10.1093/bioinformatics/bth220