AbstractThe molecular code of specific DNA recognition by proteins as a paradigm in molecular biology remains an unsolved puzzle primarily because of the subtle interplay between direct protein-DNA interaction and the indirect contribution from water and ions. Transformation of the nonspecific, low affinity complex to a specific, high affinity complex is accompanied by the release of interfacial water molecules. To provide insight into the conversion from the loose to the tight form, we characterized the structure and energetics of water at the protein-DNA interface of the BamHI complex with a noncognate sequence and in the specific complex. The fully hydrated models were produced with Grand Canonical Monte Carlo simulations. Proximity anal...
Interfacial hydration strongly influences interactions between biomolecules. For example, drug–targe...
AbstractDNA geometry depends on relative humidity. Using the CHARMM22 force field to push B-DNA to A...
Interfacial hydration strongly influences interactions between biomolecules. For example, drug–targe...
The molecular code of specific DNA recognition by proteins as a paradigm in molecular biology remain...
AbstractThe molecular code of specific DNA recognition by proteins as a paradigm in molecular biolog...
AbstractThe results of a 3-ns molecular dynamics simulation of the dodecamer duplex d(TATGGATCCATA)2...
AbstractDNA deformability and hydration are both sequence-dependent and are essential in specific DN...
AbstractThe fundamental processes by which proteins recognize and bind to nucleic acids are critical...
ABSTRACTThe molecular mechanism by which DNA-binding proteins find their specific binding sites is s...
The effects of hydration on the structure and dynamics of DNA oligomers and small proteins have been...
AbstractThe fundamental processes by which proteins recognize and bind to nucleic acids are critical...
AbstractA 2-nanosecond molecular dynamics (MD) simulation of an Antennapedia homeodomain–DNA complex...
AbstractProtein-DNA recognition of a nonspecific complex is modeled to understand the nature of the ...
There is a great interest in understanding and exploiting protein-protein associations as new routes...
To understand the energetics of the interaction between protein and DNA we analyzed 39 crystallogra...
Interfacial hydration strongly influences interactions between biomolecules. For example, drug–targe...
AbstractDNA geometry depends on relative humidity. Using the CHARMM22 force field to push B-DNA to A...
Interfacial hydration strongly influences interactions between biomolecules. For example, drug–targe...
The molecular code of specific DNA recognition by proteins as a paradigm in molecular biology remain...
AbstractThe molecular code of specific DNA recognition by proteins as a paradigm in molecular biolog...
AbstractThe results of a 3-ns molecular dynamics simulation of the dodecamer duplex d(TATGGATCCATA)2...
AbstractDNA deformability and hydration are both sequence-dependent and are essential in specific DN...
AbstractThe fundamental processes by which proteins recognize and bind to nucleic acids are critical...
ABSTRACTThe molecular mechanism by which DNA-binding proteins find their specific binding sites is s...
The effects of hydration on the structure and dynamics of DNA oligomers and small proteins have been...
AbstractThe fundamental processes by which proteins recognize and bind to nucleic acids are critical...
AbstractA 2-nanosecond molecular dynamics (MD) simulation of an Antennapedia homeodomain–DNA complex...
AbstractProtein-DNA recognition of a nonspecific complex is modeled to understand the nature of the ...
There is a great interest in understanding and exploiting protein-protein associations as new routes...
To understand the energetics of the interaction between protein and DNA we analyzed 39 crystallogra...
Interfacial hydration strongly influences interactions between biomolecules. For example, drug–targe...
AbstractDNA geometry depends on relative humidity. Using the CHARMM22 force field to push B-DNA to A...
Interfacial hydration strongly influences interactions between biomolecules. For example, drug–targe...