The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the binding intensities of a transcription factor to tens of thousands of synthetic double-stranded DNA probes, covering all possible 10-mers. A key computational challenge is inferring the binding motif from these data. We present a systematic comparison of four methods developed specifically for reconstructing a binding site motif represented as a positional weight matrix from PBM data. The reconstructed motifs were evaluated in terms of three criteria: concordance with reference motifs from the literature and ability to predict in vivo and in vitro bindings. The evaluation encompassed over 200 transcription factors and some 300 assays. The results...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
Identifying transcription factor binding sites (TFBS) in silico is key in understanding gene regulat...
Characterising transcription factor binding sites (TFBS) is an important problem in bioinformatics, ...
The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the bind...
Protein binding microarrays (PBM) are a high throughput technology used to characterize protein-DNA ...
Protein binding microarrays (PBM) are a high throughput technology used to characterize protein-DNA ...
Protein binding microarrays (PBM) are a high throughput technology used to characterize protein-DNA ...
Abstract Background Scoring DNA sequences against Pos...
Motivation: The position-specific weight matrix (PWM) model, which assumes that each position in the...
Position weight matrices (PWMs) have become a tool of choice for the identification of transcription...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
The protein-DNA interactions between Transcription Factors (TFs) and Transcription Factor Binding Si...
The protein-DNA interactions between Transcription Factors (TFs) and Transcription Factor Binding Si...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
Scanning through genomes for potential transcription factor binding sites (TFBSs) is becoming increa...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
Identifying transcription factor binding sites (TFBS) in silico is key in understanding gene regulat...
Characterising transcription factor binding sites (TFBS) is an important problem in bioinformatics, ...
The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the bind...
Protein binding microarrays (PBM) are a high throughput technology used to characterize protein-DNA ...
Protein binding microarrays (PBM) are a high throughput technology used to characterize protein-DNA ...
Protein binding microarrays (PBM) are a high throughput technology used to characterize protein-DNA ...
Abstract Background Scoring DNA sequences against Pos...
Motivation: The position-specific weight matrix (PWM) model, which assumes that each position in the...
Position weight matrices (PWMs) have become a tool of choice for the identification of transcription...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
The protein-DNA interactions between Transcription Factors (TFs) and Transcription Factor Binding Si...
The protein-DNA interactions between Transcription Factors (TFs) and Transcription Factor Binding Si...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
Scanning through genomes for potential transcription factor binding sites (TFBSs) is becoming increa...
Genomic analyses often involve scanning for potential transcription factor (TF) binding sites using ...
Identifying transcription factor binding sites (TFBS) in silico is key in understanding gene regulat...
Characterising transcription factor binding sites (TFBS) is an important problem in bioinformatics, ...