The genetic code—the binding specificity of all transfer-RNAs—defines how protein primary structure is determined by DNA sequence. DNA also dictates when and where proteins are expressed, and this information is encoded in a pattern of specific sequence motifs that are recognized by transcription factors. However, the DNA-binding specificity is only known for a small fraction of the ∼1400 human transcription factors (TFs). We describe here a high-throughput method for analyzing transcription factor binding specificity that is based on systematic evolution of ligands by exponential enrichment (SELEX) and massively parallel sequencing. The method is optimized for analysis of large numbers of TFs in parallel through the use of affinity-tagged ...
To enable low-cost, high-throughput generation of cistrome and epicistrome maps for any organism, we...
In previous work, we designed a modified aptamer-free SELEX-seq protocol (afSELEX-seq) for the disco...
We present a general high-throughput approach to accurately quantify DNA±protein interactions, which...
The genetic code—the binding specificity of all transfer-RNAs—defines how protein primary structure ...
SummaryAlthough the proteins that read the gene regulatory code, transcription factors (TFs), have b...
The ability to determine the location and relative strength of all transcription-factor binding site...
The ability to determine the location and relative strength of all transcription-factor binding site...
Many sequence variants have been linked to complex human traits and diseases, but deciphering their ...
DNA binding specificity of transcription factor (TF) has broad impact on cell physiology and develop...
<div><p>SELEX-Seq is now the optimal high-throughput technique for characterizing DNA-binding specif...
SELEX-Seq is now the optimal high-throughput technique for characterizing DNA-binding specificities ...
The term "genetic code" refers to the way in which the information encoded in nucleic acids is conv...
Transcription factor-DNA interactions are some of the most important processes in biology because th...
We present a general high-throughput approach to accurately quantify DNA-protein interactions, which...
Gene expression is regulated in part by protein transcription factors (TFs) that bind target regulat...
To enable low-cost, high-throughput generation of cistrome and epicistrome maps for any organism, we...
In previous work, we designed a modified aptamer-free SELEX-seq protocol (afSELEX-seq) for the disco...
We present a general high-throughput approach to accurately quantify DNA±protein interactions, which...
The genetic code—the binding specificity of all transfer-RNAs—defines how protein primary structure ...
SummaryAlthough the proteins that read the gene regulatory code, transcription factors (TFs), have b...
The ability to determine the location and relative strength of all transcription-factor binding site...
The ability to determine the location and relative strength of all transcription-factor binding site...
Many sequence variants have been linked to complex human traits and diseases, but deciphering their ...
DNA binding specificity of transcription factor (TF) has broad impact on cell physiology and develop...
<div><p>SELEX-Seq is now the optimal high-throughput technique for characterizing DNA-binding specif...
SELEX-Seq is now the optimal high-throughput technique for characterizing DNA-binding specificities ...
The term "genetic code" refers to the way in which the information encoded in nucleic acids is conv...
Transcription factor-DNA interactions are some of the most important processes in biology because th...
We present a general high-throughput approach to accurately quantify DNA-protein interactions, which...
Gene expression is regulated in part by protein transcription factors (TFs) that bind target regulat...
To enable low-cost, high-throughput generation of cistrome and epicistrome maps for any organism, we...
In previous work, we designed a modified aptamer-free SELEX-seq protocol (afSELEX-seq) for the disco...
We present a general high-throughput approach to accurately quantify DNA±protein interactions, which...