DNA-protein interactions are central to gene expression and chromatin regulation and have become one of the main focus areas of the ENCODE consortium. Advances in mass spectrometry and associated technologies have facilitated studies of these interactions, revealing many novel DNA-interacting proteins and histone posttranslational modifications. Proteins interacting at a single locus or at multiple loci have been targeted in these recent studies, each requiring a separate analytical strategy for isolation and analysis of DNA-protein interactions. The enrichment of target chromatin fractions occurs via a number of methods including immunopre-cipitation, affinity purification, and hybridization, with the shared goal of using proteomics approa...
Chromatin is a highly dynamic well organized nucleoprotein complex of DNA and proteins that controls...
Chromatin regulation is driven by multicomponent protein complexes, which form functional modules. D...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...
Regulation of gene expression is essential for the functioning of all eukaryotic organisms. Understa...
Chromatin is a dynamic structure comprising of DNA and proteins. Its unique nature not only help to ...
Mammals contain over 200 different cell types, yet nearly all have the same genomic DNA sequence. It...
ABSTRACT: DNA−protein interactions play critical roles in the control of genome expression and other...
The human body consists of billions of cells. These cells are not all the same, but they differ in s...
Chromatin proteins provide a scaffold for DNA packaging and a basis for epigenetic regulation and ge...
Chromatin proteins provide a scaffold for DNA packaging and a basis for epigenetic regulation and ge...
The field of epigenomics has been transformed by chromatin immunoprecipitation approaches that provi...
The fields of application of functional proteomics are not limited to the study of protein-protein i...
SummaryThe field of epigenomics has been transformed by chromatin immunoprecipitation approaches tha...
Chromatin interactions mediated by a protein of interest are of great scientific interest. Recent st...
Chromatin is a highly structured nucleoprotein complex made of histone proteins and DNA that control...
Chromatin is a highly dynamic well organized nucleoprotein complex of DNA and proteins that controls...
Chromatin regulation is driven by multicomponent protein complexes, which form functional modules. D...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...
Regulation of gene expression is essential for the functioning of all eukaryotic organisms. Understa...
Chromatin is a dynamic structure comprising of DNA and proteins. Its unique nature not only help to ...
Mammals contain over 200 different cell types, yet nearly all have the same genomic DNA sequence. It...
ABSTRACT: DNA−protein interactions play critical roles in the control of genome expression and other...
The human body consists of billions of cells. These cells are not all the same, but they differ in s...
Chromatin proteins provide a scaffold for DNA packaging and a basis for epigenetic regulation and ge...
Chromatin proteins provide a scaffold for DNA packaging and a basis for epigenetic regulation and ge...
The field of epigenomics has been transformed by chromatin immunoprecipitation approaches that provi...
The fields of application of functional proteomics are not limited to the study of protein-protein i...
SummaryThe field of epigenomics has been transformed by chromatin immunoprecipitation approaches tha...
Chromatin interactions mediated by a protein of interest are of great scientific interest. Recent st...
Chromatin is a highly structured nucleoprotein complex made of histone proteins and DNA that control...
Chromatin is a highly dynamic well organized nucleoprotein complex of DNA and proteins that controls...
Chromatin regulation is driven by multicomponent protein complexes, which form functional modules. D...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...