Background Sequence matching is extremely important for applications throughout biology, particularly for discovering information such as functional and evolutionary relationships, and also for discriminating between unimportant and disease mutants. At present the functions of a large fraction of genes are unknown; improvements in sequence matching will improve gene annotations. Universal amino acid substitution matrices such as Blosum62 are used to measure sequence similarities and to identify distant homologues, regardless of the structure class. However, such single matrices do not take into account important structural information evident within the different topologies of proteins and treats substitutions within all protein folds ident...
In protein sequence alignment, residue similarity is usually evaluated by substitution matrix, which...
The structural annotation of proteins with no detectable homologs of known 3D structure identified u...
Our approach to fold recognition for the fourth critical assessment of techniques for protein struct...
Background Sequence matching is extremely important for applications throughout biology, particularl...
Motivation: Although many amino acid substitution matrices have been developed, it has not been well...
Sequence alignment techniques have been developed into extremely powerful tools for identifying the ...
A new protein structure alignment procedure (SHEBA: structural homology by environment based alignme...
Sequence alignment and database searching are essential tools in biology because a protein's functio...
Protein sequence matching does not properly account for some well-known features of protein structur...
Motivation: Many proteins with vastly dissimilar sequences are found to share a common fold, as evid...
Amino acid sequence analysis provides important insight into the structure of proteins, which in tur...
One of the landmark successes in bioinformatics has been the development of sequence-based algorithm...
Background: For genome sequencing projects to achieve their full impact on biology and medicine, eac...
Most sequence alignment tools can successfully align protein sequences with higher levels of sequenc...
The structural annotation of proteins with no detectable homologs of known 3D structure identified u...
In protein sequence alignment, residue similarity is usually evaluated by substitution matrix, which...
The structural annotation of proteins with no detectable homologs of known 3D structure identified u...
Our approach to fold recognition for the fourth critical assessment of techniques for protein struct...
Background Sequence matching is extremely important for applications throughout biology, particularl...
Motivation: Although many amino acid substitution matrices have been developed, it has not been well...
Sequence alignment techniques have been developed into extremely powerful tools for identifying the ...
A new protein structure alignment procedure (SHEBA: structural homology by environment based alignme...
Sequence alignment and database searching are essential tools in biology because a protein's functio...
Protein sequence matching does not properly account for some well-known features of protein structur...
Motivation: Many proteins with vastly dissimilar sequences are found to share a common fold, as evid...
Amino acid sequence analysis provides important insight into the structure of proteins, which in tur...
One of the landmark successes in bioinformatics has been the development of sequence-based algorithm...
Background: For genome sequencing projects to achieve their full impact on biology and medicine, eac...
Most sequence alignment tools can successfully align protein sequences with higher levels of sequenc...
The structural annotation of proteins with no detectable homologs of known 3D structure identified u...
In protein sequence alignment, residue similarity is usually evaluated by substitution matrix, which...
The structural annotation of proteins with no detectable homologs of known 3D structure identified u...
Our approach to fold recognition for the fourth critical assessment of techniques for protein struct...