In order to understand gene regulatory networks (GRNs) in mammalian cells, it is pivotal to assess the interaction between proteins and DNA. In particular, the specific DNA binding activity of transcription factors (TFs) determines the expression of target genes and in general the overall connectivity of the GRN. However, the genomic location of TF binding cannot be predicted just from the DNA sequence, and functional assays are required to detect this interaction. The investigation of the binding of TF to DNA is usually accomplished by chromatin immunoprecipitation followed by next-generation sequencing (ChIP-seq). While in the last 10 years this method enabled a better understanding of how transcription is regulated in living cel...
Detecting in vivo transcription factor (TF) binding is important for understanding gene regulatory c...
To enable low-cost, high-throughput generation of cistrome and epicistrome maps for any organism, we...
DNA adenine methylation identification (DamID) is a powerful method to determine DNA binding profile...
The interaction of proteins and RNA with chromatin underlies the regulation of gene expression. The ...
DNA adenine methyltransferase identification with sequencing (abbreviated DamIDseq) is a technique ...
The precise control of gene expression by transcription factor networks is crucial to organismal dev...
The precise control of gene expression by transcription factor networks is crucial to organismal dev...
The correct control of gene expression is essential for the proper development of organisms. Abnorma...
DNA adenine methyltransferase identification (DamID) is an enzymatic technology for detecting DNA re...
AbstractIn recent years, DNA adenine methyltransferase identification (DamID) has emerged as a power...
The ability to profile transcription and chromatin binding in a cell type-specific manner is a power...
Transcription factors (TFs) are proteins that bind to DNA in a sequence-specific manner and regulate...
This protocol is an extension to: Nat. Protoc. 2, 1467-1478 (2007); doi:10.1038/nprot.2007.148; publ...
Summary: Mapping the binding sites of DNA- or chromatin-interacting proteins is essential to underst...
DNA adenine methyltransferase identification (DamID) measures a protein's DNA-binding history by met...
Detecting in vivo transcription factor (TF) binding is important for understanding gene regulatory c...
To enable low-cost, high-throughput generation of cistrome and epicistrome maps for any organism, we...
DNA adenine methylation identification (DamID) is a powerful method to determine DNA binding profile...
The interaction of proteins and RNA with chromatin underlies the regulation of gene expression. The ...
DNA adenine methyltransferase identification with sequencing (abbreviated DamIDseq) is a technique ...
The precise control of gene expression by transcription factor networks is crucial to organismal dev...
The precise control of gene expression by transcription factor networks is crucial to organismal dev...
The correct control of gene expression is essential for the proper development of organisms. Abnorma...
DNA adenine methyltransferase identification (DamID) is an enzymatic technology for detecting DNA re...
AbstractIn recent years, DNA adenine methyltransferase identification (DamID) has emerged as a power...
The ability to profile transcription and chromatin binding in a cell type-specific manner is a power...
Transcription factors (TFs) are proteins that bind to DNA in a sequence-specific manner and regulate...
This protocol is an extension to: Nat. Protoc. 2, 1467-1478 (2007); doi:10.1038/nprot.2007.148; publ...
Summary: Mapping the binding sites of DNA- or chromatin-interacting proteins is essential to underst...
DNA adenine methyltransferase identification (DamID) measures a protein's DNA-binding history by met...
Detecting in vivo transcription factor (TF) binding is important for understanding gene regulatory c...
To enable low-cost, high-throughput generation of cistrome and epicistrome maps for any organism, we...
DNA adenine methylation identification (DamID) is a powerful method to determine DNA binding profile...