Recognition of protein-DNA binding sites in genomic sequences is a crucial step for discovering biological functions of genomic sequences. Explosive growth in availability of sequence information has resulted in a demand for binding site detection methods with high specificity. The motivation of the work presented here is to address this demand by a systematic approach based on Maximum Likelihood Estimation. A general framework is developed in which a large class of binding site detection methods can be described in a uniform and consistent way. Protein-DNA binding is determined by binding energy, which is an approximately linear function within the space of sequence words. All matrix based binding word detectors can be regarded as differen...
Position weight matrices (PWMs) have become a tool of choice for the identification of transcription...
Since the importance of DNA-binding proteins in multiple biomolecular functions has been recognized,...
Key words: knowledge discovery and data mining, machine learning, eukaryotic promoter recognition, t...
Detecting the sites on genomic DNA at which DNA binding proteins bind is a highly relevant task in b...
The knowledge of protein-DNA interactions is essential to fully understand the molecular activities ...
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 ...
Background: Interactions between DNA and proteins are essential to many biological processes such as...
Abstract: Protein and DNA have vital role in our biological processes. For accurately predicting DNA...
Abstract Background Scoring DNA sequences against Pos...
Identifying transcription factor binding sites (TFBS) in silico is key in understanding gene regulat...
The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the bind...
Regulation of gene expression is pivotal to cell behavior. It is achieved predominantly by transcrip...
Transcription factor-DNA interactions, central to cellular regulation and control, are commonly desc...
The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the bind...
Position weight matrices (PWMs) have become a tool of choice for the identification of transcription...
Since the importance of DNA-binding proteins in multiple biomolecular functions has been recognized,...
Key words: knowledge discovery and data mining, machine learning, eukaryotic promoter recognition, t...
Detecting the sites on genomic DNA at which DNA binding proteins bind is a highly relevant task in b...
The knowledge of protein-DNA interactions is essential to fully understand the molecular activities ...
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 ...
Background: Interactions between DNA and proteins are essential to many biological processes such as...
Abstract: Protein and DNA have vital role in our biological processes. For accurately predicting DNA...
Abstract Background Scoring DNA sequences against Pos...
Identifying transcription factor binding sites (TFBS) in silico is key in understanding gene regulat...
The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the bind...
Regulation of gene expression is pivotal to cell behavior. It is achieved predominantly by transcrip...
Transcription factor-DNA interactions, central to cellular regulation and control, are commonly desc...
The new technology of protein binding microarrays (PBMs) allows simultaneous measurement of the bind...
Position weight matrices (PWMs) have become a tool of choice for the identification of transcription...
Since the importance of DNA-binding proteins in multiple biomolecular functions has been recognized,...
Key words: knowledge discovery and data mining, machine learning, eukaryotic promoter recognition, t...