AbstractDithioation of DNA phosphate is known to enhance binding affinities, at least for some proteins. We mechanistically characterized this phenomenon for the Antennapedia homeodomain-DNA complex by integrated use of fluorescence, isothermal titration calorimetry, NMR spectroscopy, and x-ray crystallography. By fluorescence and isothermal titration calorimetry, we found that this affinity enhancement is entropy driven. By NMR, we investigated the ionic hydrogen bonds and internal motions of lysine side-chain NH3+ groups involved in ion pairs with DNA. By x-ray crystallography, we compared the structures of the complexes with and without dithioation of the phosphate. Our NMR and x-ray data show that the lysine side chain in contact with t...
We report complete thermodynamic binding profiles for the complexation of three minor groove directe...
Ion pairing is one of the most fundamental chemical interactions and is essential for molecular reco...
Complexation of positively charged sites in a protein with the negative DNA phosphate groups shields...
AbstractDithioation of DNA phosphate is known to enhance binding affinities, at least for some prote...
This thesis treats the molecular recognition between DNA-binding proteins and DNA and the way these ...
The N-terminal 56 amino acid headpieces of the wild-type and mutant Y7I lac repressors and the 14-22...
ABSTRACT: Intermolecular ion pairs (salt bridges) are crucial for protein−DNA association. For two p...
DNA is fundamental for all living cells; the DNA holds the genetic code, which is more or less the i...
DNA bending by DNA binding proteins is required to facilitate a myriad of essential cellular process...
Architectural DNA–binding proteins are involved in many important DNA transactions by virtue of thei...
Basic side chains play crucial roles in protein–DNA interactions. In this study, using NMR spectrosc...
Protein-DNA interactions involve a redistribution of conformational dynamics and hydration propertie...
<div><p>Decades of intensive experimental studies of the recognition of DNA sequences by proteins ha...
Background: Protein-DNA recognition underlies fundamental biological processes ranging from transcr...
High-resolution crystallographic views of protein-DNA complexes reveal the structural complexity of ...
We report complete thermodynamic binding profiles for the complexation of three minor groove directe...
Ion pairing is one of the most fundamental chemical interactions and is essential for molecular reco...
Complexation of positively charged sites in a protein with the negative DNA phosphate groups shields...
AbstractDithioation of DNA phosphate is known to enhance binding affinities, at least for some prote...
This thesis treats the molecular recognition between DNA-binding proteins and DNA and the way these ...
The N-terminal 56 amino acid headpieces of the wild-type and mutant Y7I lac repressors and the 14-22...
ABSTRACT: Intermolecular ion pairs (salt bridges) are crucial for protein−DNA association. For two p...
DNA is fundamental for all living cells; the DNA holds the genetic code, which is more or less the i...
DNA bending by DNA binding proteins is required to facilitate a myriad of essential cellular process...
Architectural DNA–binding proteins are involved in many important DNA transactions by virtue of thei...
Basic side chains play crucial roles in protein–DNA interactions. In this study, using NMR spectrosc...
Protein-DNA interactions involve a redistribution of conformational dynamics and hydration propertie...
<div><p>Decades of intensive experimental studies of the recognition of DNA sequences by proteins ha...
Background: Protein-DNA recognition underlies fundamental biological processes ranging from transcr...
High-resolution crystallographic views of protein-DNA complexes reveal the structural complexity of ...
We report complete thermodynamic binding profiles for the complexation of three minor groove directe...
Ion pairing is one of the most fundamental chemical interactions and is essential for molecular reco...
Complexation of positively charged sites in a protein with the negative DNA phosphate groups shields...