Multiple sequence alignment.
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Summary
The alignment previously proposed for the DNA- binding proteins on the basis of structural comparisons and inspection of sequences is supported quite dramatically, and a highly significant alignment is found for the FAD-binding proteins.
- Type
- article
- Published
- 1986-09-20
- Cited by
- 78
- References
- 40
- OpenAlex
- https://openalex.org/W1979081881
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31222197
Keywords
Structural alignment, Multiple sequence alignment, Set (abstract data type), Sequence (biology), Heap (data structure)
References
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- Further improvements in the method of testing for evolutionary homology among proteins.
- Analysis of gene duplication repeats in the myosin rod.
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- Tests for comparing related amino-acid sequences. Cytochrome c and cytochrome c 551 .
- Similar amino acid sequences: chance or common ancestry?
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- Molecular cloning and nucleotide sequencing of the gene for E. coli cAMP receptor protein.
- Primary structure of ribonuclease from bacillus intermedius 7P
Cited by
- A flexible method to align large numbers of biological sequences
- Self‐organizing hierarchic networks for pattern recognition in protein sequence
- Computational problems in evolution: Multiple alignment, genome rearrangements, and tree reconstruction
- Environmentally Influenced Duplication Patterns Followed by Functional Shifts Fueling the Evolution of Metazoan Sensory Systems
- Sensitivity comparison of protein amino acid sequences.
- Multiple sequence comparison.
- Computer analysis of protein structure.
- Protein multiple sequence alignment and flexible pattern matching.
- Using CLUSTAL for multiple sequence alignments.
- A strategy for the rapid multiple alignment of protein sequences. Confidence levels from tertiary structure comparisons.
- Comparative methods for identifying functional domains in protein sequences.
- Multi-channel piecewise selective averaging of cognitive evoked potentials with variable latency
- Substitution of basic amino acids within endonuclease V enhances nontarget DNA binding.
- Trees, stars, and multiple biological sequence alignment
- Modelling of peptide and protein structures
- Structural and functional homology of parvovirus and papovavirus polypeptides.
- A method for multiple sequence alignment with gaps.
- Multiple alignment, communication cost, and graph matching
- The use of folding patterns in the search of protein structural similarities; a three-dimensional model of phosphoribosyl transferases.
- Detecting subtle sequence signals: a Gibbs sampling strategy for multiple alignment.
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