AbstractHigh mobility group B (HMGB) proteins contain two HMG box domains known to bind without sequence specificity into the DNA minor groove, slightly intercalating between basepairs and producing a strong bend in the DNA backbone. We use optical tweezers to measure the forces required to stretch single DNA molecules. Parameters describing DNA flexibility, including contour length and persistence length, are revealed. In the presence of nanomolar concentrations of isolated HMG box A from HMGB2, DNA shows a decrease in its persistence length, where the protein induces an average DNA bend angle of 114±21° for 50mM Na+, and 87±9° for 100mM Na+. The DNA contour length increases from 0.341±0.003 to 0.397±0.012nm per basepair, independent of sa...
SummaryFacilitated binding of p53 to DNA by high mobility group B1 (HMGB1) may involve interaction b...
AbstractBinding constants have been measured for the interaction of the protein HMG1 with native DNA...
The regulation of chromatin structure in eukaryotic cells involves abundant architectural factors su...
AbstractHigh mobility group B (HMGB) proteins contain two HMG box domains known to bind without sequ...
Protein HMGB1 has long been known as one of the most abundant non-histone proteins in the nucleus of...
High-mobility group protein 1 (HMGB1) is an essential and ubiquitous DNA architectural factor that i...
The Saccharomyces cerevisiae high-mobility group protein HMO1 is composed of two DNA-binding domains...
High mobility group box (HMGB) proteins are architectural proteins whose HMG DNA binding domains con...
High-mobility group B (HMGB) proteins bind duplex DNA without sequence specificity, facilitating the...
High mobility group box (HMGB) members are DNA binding proteins with varied functions present across...
<p><b>A</b>, folded structure of HMGB1 protein showing the acidic C-tail (green) in contact with the...
HMGB2 (HMG2) protein binds with DNA duplex in a sequence-nonspecific manner, then bends and unwinds ...
High Mobility Group proteins (HMG) are architectural factors involved in modulating chromatin struct...
AbstractUsing spectroscopic methods, we have studied the structural changes induced in both protein ...
<p>A cartoon based on the NMR-deduced structure of the HMG domain and basic tail (BT) of murine LEF-...
SummaryFacilitated binding of p53 to DNA by high mobility group B1 (HMGB1) may involve interaction b...
AbstractBinding constants have been measured for the interaction of the protein HMG1 with native DNA...
The regulation of chromatin structure in eukaryotic cells involves abundant architectural factors su...
AbstractHigh mobility group B (HMGB) proteins contain two HMG box domains known to bind without sequ...
Protein HMGB1 has long been known as one of the most abundant non-histone proteins in the nucleus of...
High-mobility group protein 1 (HMGB1) is an essential and ubiquitous DNA architectural factor that i...
The Saccharomyces cerevisiae high-mobility group protein HMO1 is composed of two DNA-binding domains...
High mobility group box (HMGB) proteins are architectural proteins whose HMG DNA binding domains con...
High-mobility group B (HMGB) proteins bind duplex DNA without sequence specificity, facilitating the...
High mobility group box (HMGB) members are DNA binding proteins with varied functions present across...
<p><b>A</b>, folded structure of HMGB1 protein showing the acidic C-tail (green) in contact with the...
HMGB2 (HMG2) protein binds with DNA duplex in a sequence-nonspecific manner, then bends and unwinds ...
High Mobility Group proteins (HMG) are architectural factors involved in modulating chromatin struct...
AbstractUsing spectroscopic methods, we have studied the structural changes induced in both protein ...
<p>A cartoon based on the NMR-deduced structure of the HMG domain and basic tail (BT) of murine LEF-...
SummaryFacilitated binding of p53 to DNA by high mobility group B1 (HMGB1) may involve interaction b...
AbstractBinding constants have been measured for the interaction of the protein HMG1 with native DNA...
The regulation of chromatin structure in eukaryotic cells involves abundant architectural factors su...