Cross-linking mass spectrometry (XLMS) allows mapping of protein-protein and protein-RNA interactions, but the analysis of protein-DNA complexes remains challenging. Here, the authors develop a UV light-based XLMS workflow to determine protein-DNA interfaces in reconstituted chromatin and isolated nuclei
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
The study of protein-DNA interactions has become a major focus of biochemical research since the re...
Transcription factors (TFs) regulate target genes by specific interactions with DNA sequences. Detec...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...
Cross-linking mass spectrometry (MS) is an important tool in structural biology, but its application...
Interactions of DNA with structural proteins such as histones, regulatory proteins and enzymes play ...
Interactions of DNA with structural proteins such as histones, regulatory proteins and enzymes play ...
Protein-nucleic acid interactions play essential roles in all living cells in various cellular func...
Better defining the dynamics of biomolecular interactions is an important step in understanding mole...
Better defining the dynamics of biomolecular interactions is an important step in understanding mole...
RNA–protein interactions play a crucial role in gene expression. These interactions take place in so...
RNA–protein interactions play a crucial role in gene expression. These interactions take place in so...
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
The study of protein-DNA interactions has become a major focus of biochemical research since the re...
Transcription factors (TFs) regulate target genes by specific interactions with DNA sequences. Detec...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...
Protein–DNA interactions are key to the functionality and stability of the genome. Identification an...
Cross-linking mass spectrometry (MS) is an important tool in structural biology, but its application...
Interactions of DNA with structural proteins such as histones, regulatory proteins and enzymes play ...
Interactions of DNA with structural proteins such as histones, regulatory proteins and enzymes play ...
Protein-nucleic acid interactions play essential roles in all living cells in various cellular func...
Better defining the dynamics of biomolecular interactions is an important step in understanding mole...
Better defining the dynamics of biomolecular interactions is an important step in understanding mole...
RNA–protein interactions play a crucial role in gene expression. These interactions take place in so...
RNA–protein interactions play a crucial role in gene expression. These interactions take place in so...
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
Interactions between DNA and proteins are mainly studied through chemical procedures involving bi-fu...
The study of protein-DNA interactions has become a major focus of biochemical research since the re...
Transcription factors (TFs) regulate target genes by specific interactions with DNA sequences. Detec...