The problem of detecting DNA motifs with functional relevance in real biological sequences is difficult due to a number of biological, statistical and computational issues and also because of the lack of knowledge about the structure of searched patterns. Many algorithms are implemented in fully automated processes, which are often based upon a guess of input parameters from the user at the very first step. In this paper, we present a novel method for the detection of seeded DNA motifs, composed by regions with a different extent of variability. The method is based on a multi-step approach, which was implemented in a motif searching web tool (MOST). Overrepresented exact patterns are extracted from input sequences and clustered to produce m...
International audienceBackground:Discovering over-represented approximate motifs in DNA sequences is...
Abstract Background Discovering over-represented approximate motifs in DNA sequences is an essential...
This master thesis is a Ph.D. research plan for motif discovery in biological sequences, and consist...
The problem of detecting DNA motifs with functional relevance in real biological sequences is diffic...
The problem of detecting DNA motifs with functional relevance in real biological sequences is diffic...
BACKGROUND:Unraveling the mechanisms that regulate gene expression is a major challenge in biology. ...
Deoxyribonucleic acid (DNA) motif finding (discovery/mining) in biological chains is the most recent...
A significant growth in the volume of bio-molecular sequence data (DNA, RNA and protein sequences) o...
A significant growth in the volume of bio-molecular sequence data (DNA, RNA and protein sequences) o...
With the large amount of biological data generated due to DNA sequencing of various organisms, it is...
A significant growth in the volume of bio-molecular sequence data (DNA, RNA and protein sequences) o...
OBJECTIVE: The human genome project has resulted in the generation of voluminous biological data. No...
Motivation: Finding common patterns, motifs, from a set of promoter regions of coregulated genes is ...
International audienceBackground:Discovering over-represented approximate motifs in DNA sequences is...
OBJECTIVE: The human genome project has resulted in the generation of voluminous biological data. No...
International audienceBackground:Discovering over-represented approximate motifs in DNA sequences is...
Abstract Background Discovering over-represented approximate motifs in DNA sequences is an essential...
This master thesis is a Ph.D. research plan for motif discovery in biological sequences, and consist...
The problem of detecting DNA motifs with functional relevance in real biological sequences is diffic...
The problem of detecting DNA motifs with functional relevance in real biological sequences is diffic...
BACKGROUND:Unraveling the mechanisms that regulate gene expression is a major challenge in biology. ...
Deoxyribonucleic acid (DNA) motif finding (discovery/mining) in biological chains is the most recent...
A significant growth in the volume of bio-molecular sequence data (DNA, RNA and protein sequences) o...
A significant growth in the volume of bio-molecular sequence data (DNA, RNA and protein sequences) o...
With the large amount of biological data generated due to DNA sequencing of various organisms, it is...
A significant growth in the volume of bio-molecular sequence data (DNA, RNA and protein sequences) o...
OBJECTIVE: The human genome project has resulted in the generation of voluminous biological data. No...
Motivation: Finding common patterns, motifs, from a set of promoter regions of coregulated genes is ...
International audienceBackground:Discovering over-represented approximate motifs in DNA sequences is...
OBJECTIVE: The human genome project has resulted in the generation of voluminous biological data. No...
International audienceBackground:Discovering over-represented approximate motifs in DNA sequences is...
Abstract Background Discovering over-represented approximate motifs in DNA sequences is an essential...
This master thesis is a Ph.D. research plan for motif discovery in biological sequences, and consist...