Protein or DNA motifs are sequence regions which possess biological importance. These regions are often highly conserved among homologous sequences. The generation of multiple sequence alignments (MSAs) with a correct alignment of the conserved sequence motifs is still difficult to achieve, due to the fact that the contribution of these typically short fragments is overshadowed by the rest of the sequence. Here we extended the PRALINE multiple sequence alignment program with a novel motif-aware MSA algorithm in order to address this shortcoming. This method can incorporate explicit information about the presence of externally provided sequence motifs, which is then used in the dynamic programming step by boosting the amino acid substitution...
Title: Multiple sequence alignment using genetic algorithms Author: Zdeněk Pátek Department: Departm...
Profile ALIgNmEnt (PRALINE) is a versatile multiple sequence alignment toolkit. In its main alignmen...
Title: Multiple sequence alignment using genetic algorithms Author: Zdeněk Pátek Department: Departm...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
\u3cp\u3eProtein or DNA motifs are sequence regions which possess biological importance. These regio...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Current progress in genome research projects has generated huge amount of data. As a result, the ana...
Abstract Background Linear motifs (LMs) are abundant short regulatory sites used for modulating the ...
Background: Multiple sequence alignment algorithms are very important tools in molecular biology tod...
Biology is encoded in molecular sequences: deciphering this encoding remains a grand scientific chal...
Biology is encoded in molecular sequences: deciphering this encoding remains a grand scientific chal...
Title: Multiple sequence alignment using genetic algorithms Author: Zdeněk Pátek Department: Departm...
Profile ALIgNmEnt (PRALINE) is a versatile multiple sequence alignment toolkit. In its main alignmen...
Title: Multiple sequence alignment using genetic algorithms Author: Zdeněk Pátek Department: Departm...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
\u3cp\u3eProtein or DNA motifs are sequence regions which possess biological importance. These regio...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Protein or DNA motifs are sequence regions which possess biological importance. These regions are of...
Current progress in genome research projects has generated huge amount of data. As a result, the ana...
Abstract Background Linear motifs (LMs) are abundant short regulatory sites used for modulating the ...
Background: Multiple sequence alignment algorithms are very important tools in molecular biology tod...
Biology is encoded in molecular sequences: deciphering this encoding remains a grand scientific chal...
Biology is encoded in molecular sequences: deciphering this encoding remains a grand scientific chal...
Title: Multiple sequence alignment using genetic algorithms Author: Zdeněk Pátek Department: Departm...
Profile ALIgNmEnt (PRALINE) is a versatile multiple sequence alignment toolkit. In its main alignmen...
Title: Multiple sequence alignment using genetic algorithms Author: Zdeněk Pátek Department: Departm...