Over the last few decades, computational genomics has tremendously contributed to decipher biology from genome sequences and related data. Considerable effort has been devoted to prediction of transcription promoter and terminator sites that represent the essential "punctuation marks" for DNA transcription. In this study we have investigated the possibility to identify putative promoters and Rho-dependent terminators in prokaryotes on the basis of evolutionarily conserved motifs. The final aim of this work is to develop computer software to predict location of bacterial promoters and terminators based on nucleic acid motifs
Background: Accurate prediction of DNA motifs that are targets of RNA polymerases, sigma factors and...
Abstract Background Algorithms that locate evolutionarily conserved sequences have become powerful t...
BACKGROUND: Searching for approximate patterns in large promoter sequences frequently produces an e...
Over the last few decades, computational genomics has tremendously contributed to decipher biology f...
Background: In bacterial genomes, there are two mechanisms to terminate the DNA transcription: the "...
Abstract Background In bacterial genomes, there are two mechanisms to terminate the DNA transcriptio...
Abstract Background Over the last few decades, computational genomics has tremendously contributed t...
Background: In many prokaryotes, transcription of DNA to RNA is terminated by a thymine-rich stretc...
Regulation of gene transcription is a complex process involving many different proteins, some of whi...
Transcription is a biochemical process in which genes are copied to produce proteins. Transcription ...
The basic nature of the sequence features that define a promoter sequence for Escherichia coli RNA p...
The availability of computational methods to identify and define the precise structure and location ...
Although protein recognition of DNA motifs in promoter regions has been traditionally considered as ...
Background: Searching for approximate patterns in large promoter sequences frequently produces an ex...
Despite many recent efforts, in silico identification of promoter regions is still in its infancy. H...
Background: Accurate prediction of DNA motifs that are targets of RNA polymerases, sigma factors and...
Abstract Background Algorithms that locate evolutionarily conserved sequences have become powerful t...
BACKGROUND: Searching for approximate patterns in large promoter sequences frequently produces an e...
Over the last few decades, computational genomics has tremendously contributed to decipher biology f...
Background: In bacterial genomes, there are two mechanisms to terminate the DNA transcription: the "...
Abstract Background In bacterial genomes, there are two mechanisms to terminate the DNA transcriptio...
Abstract Background Over the last few decades, computational genomics has tremendously contributed t...
Background: In many prokaryotes, transcription of DNA to RNA is terminated by a thymine-rich stretc...
Regulation of gene transcription is a complex process involving many different proteins, some of whi...
Transcription is a biochemical process in which genes are copied to produce proteins. Transcription ...
The basic nature of the sequence features that define a promoter sequence for Escherichia coli RNA p...
The availability of computational methods to identify and define the precise structure and location ...
Although protein recognition of DNA motifs in promoter regions has been traditionally considered as ...
Background: Searching for approximate patterns in large promoter sequences frequently produces an ex...
Despite many recent efforts, in silico identification of promoter regions is still in its infancy. H...
Background: Accurate prediction of DNA motifs that are targets of RNA polymerases, sigma factors and...
Abstract Background Algorithms that locate evolutionarily conserved sequences have become powerful t...
BACKGROUND: Searching for approximate patterns in large promoter sequences frequently produces an e...