AbstractStudies performed in our laboratory demonstrated the formation of two thermodynamically distinct complexes on binding of netropsin to a number of hairpin-forming DNA sequences containing AATT-binding regions. These two complexes were proposed to differ only by a bridging water molecule between the drug and the DNA in the lower affinity complex. A temperature-dependent isothermal titration calorimetry (ITC)-binding study was performed using one of these constructs (a 20-mer hairpin of sequence 5′-CGAATTCGTCTCCGAATTCG) and netropsin. This study demonstrated a break in the heat capacity change for the formation of the complex containing the bridging water molecule at ∼303K. In the plot of the binding enthalpy change versus temperature,...
In this work we present evidence that water molecules are actively involved on the control of bindin...
Stem-loop DNA hairpins containing a 5-base-pair (bp) stem and single-stranded polythymidine loop wer...
AbstractA large, negative ΔCp of DNA binding is a thermodynamic property of the majority of sequence...
AbstractStudies performed in our laboratory demonstrated the formation of two thermodynamically dist...
We use a variety of biophysical techniques to determine thermodynamic profiles, including hydration,...
We report complete thermodynamic binding profiles for the complexation of three minor groove directe...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
The influence of cosolutes and DNA sequence on the interaction of netropsin with three duplexes has ...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
Sequence-dependent thermodynamic quantities for the antiviral agent netropsin and a related bis(N-me...
The global stability of DNA molecules depends on base stacking, base-pairing, ionic and hydration co...
High mobility group A, HMGA, proteins are architectural proteins that bind to the minor groove of AT...
Abstract4′,6-Diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders th...
Molecular dynamics simulations of drug–DNA complexes have been carried out in order to explain the e...
AbstractBinding of a small molecule to a macromolecular target reduces its conformational freedom, r...
In this work we present evidence that water molecules are actively involved on the control of bindin...
Stem-loop DNA hairpins containing a 5-base-pair (bp) stem and single-stranded polythymidine loop wer...
AbstractA large, negative ΔCp of DNA binding is a thermodynamic property of the majority of sequence...
AbstractStudies performed in our laboratory demonstrated the formation of two thermodynamically dist...
We use a variety of biophysical techniques to determine thermodynamic profiles, including hydration,...
We report complete thermodynamic binding profiles for the complexation of three minor groove directe...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
The influence of cosolutes and DNA sequence on the interaction of netropsin with three duplexes has ...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
Sequence-dependent thermodynamic quantities for the antiviral agent netropsin and a related bis(N-me...
The global stability of DNA molecules depends on base stacking, base-pairing, ionic and hydration co...
High mobility group A, HMGA, proteins are architectural proteins that bind to the minor groove of AT...
Abstract4′,6-Diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders th...
Molecular dynamics simulations of drug–DNA complexes have been carried out in order to explain the e...
AbstractBinding of a small molecule to a macromolecular target reduces its conformational freedom, r...
In this work we present evidence that water molecules are actively involved on the control of bindin...
Stem-loop DNA hairpins containing a 5-base-pair (bp) stem and single-stranded polythymidine loop wer...
AbstractA large, negative ΔCp of DNA binding is a thermodynamic property of the majority of sequence...