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An operon is a set of genes controlled by a single DNA-binding protein.
Many DNA-binding proteins can recognize specific base pairing patterns that identify particular regulatory regions of genes.
Antibodies are not required for studying the interactions of DNA-binding proteins in the B1H system.
Hence when working with DNA-binding proteins of eukaryotic origin, a yeast-based hybrid system may be beneficial.
Most activators are DNA-binding proteins.
This idea is supported by the potential similarity of two other DNA-binding proteins that regulate transcription during the yeast cell cycle.
These maps can determine the binding sites of many DNA-binding proteins like transcription factors and also chromatin modifications.
FOXA1 is a member of the forkhead class of DNA-binding proteins.
The DNA was also protected by DNA-binding proteins such as histones.
It is a DNA-binding protein that enhances other transcription factors, or is a transcription factor itself.
Three-helix bundles often occur in actin-binding proteins and in DNA-binding proteins.
The distinction between methylated and unmethylated cytosine residues is carried out by specific DNA-binding proteins.
Smads have been shown to mediate transcription via modulating the transcriptional activity of many other DNA-binding proteins.
Depending on the degree of specificity of the protein, a DNA-binding protein can bind to more than one specific sequence.
Specifically, it allows the identification of the cistrome, sum of binding sites, for DNA-binding proteins on a genome-wide basis.
This gene encodes a transcription factor that is a member of the leucine zipper family of DNA-binding proteins.
Here, this approach is adopted for predicting DNA-binding sites in DNA-binding proteins.
Phosphocellulose chromatography utilizes the binding affinity of many DNA-binding proteins for phosphocellulose.
ERCC6 encodes a DNA-binding protein that is important in transcription-coupled excision repair.
DRTF1/E2F thus appears to contain at least two sequence-specific DNA-binding proteins.
Thus, the particular combination of transcription factors and other DNA-binding proteins in a developing tissue controls which genes will be expressed in that tissue.
Designing DNA-binding proteins that have a specified DNA-binding site has been an important goal for biotechnology.
DNA footprinting is a method of investigating the sequence specificity of DNA-binding proteins in vitro.
HspQ (YccV like protein domain) is a hemimethylated DNA-binding protein.
The lac repressor is a DNA-binding protein which inhibits the expression of genes which code for lactase enzymes.