Abstract4′,6-Diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders that have terminal −C(NH2)2+ groups. The hydration changes that accompany their binding to the minor groove of the (AATT)2 sequence have been studied using the osmotic stress technique with fluorescence spectroscopy. The affinity of DAPI for the binding site decreases with the increasing osmolality of the solution, resulting in acquisition of 35±1 waters upon binding. A competition fluorescence assay was utilized to measure the binding constants and hydration changes of the other two ligands, using the DNA-DAPI complex as the fluorescence reporter. Upon their association to the (AATT)2 binding site, netropsin and pentamidine acquire 26±3 and 34...
Actiaomycin-D (actD) binds to natural DNA at two different classes of binding sites, weak and strong...
Ligand binding to minor-grooves of DNA depends on DNA-base sequence near its binding-site. However, ...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...
Abstract4′,6-Diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders th...
4\u27,6-diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders that ha...
4\u27,6-diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders that ha...
Water molecules in the DNA grooves are critical for maintaining structural integrity, conformational...
Water molecules in the DNA grooves are critical for maintaining structural integrity, conformational...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
Target recognition by DNA-binding ligands, such as drugs, occurs in an aqueous environment, in which...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
Target recognition by DNA-binding ligands, such as drugs, occurs in an aqueous environment, in which...
In this work we present evidence that water molecules are actively involved on the control of bindin...
Water molecules at the surface of DNA are critical to its equilibrium structure, DNA–protein functi...
Water molecules at the surface of DNA are critical to its equilibrium structure, DNA–protein functi...
Actiaomycin-D (actD) binds to natural DNA at two different classes of binding sites, weak and strong...
Ligand binding to minor-grooves of DNA depends on DNA-base sequence near its binding-site. However, ...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...
Abstract4′,6-Diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders th...
4\u27,6-diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders that ha...
4\u27,6-diamidino-2-phenylindole (DAPI), netropsin, and pentamidine are minor groove binders that ha...
Water molecules in the DNA grooves are critical for maintaining structural integrity, conformational...
Water molecules in the DNA grooves are critical for maintaining structural integrity, conformational...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
Target recognition by DNA-binding ligands, such as drugs, occurs in an aqueous environment, in which...
Two helical (alpha and beta) strands form DNA. The DNA structural background provides grooves which ...
Target recognition by DNA-binding ligands, such as drugs, occurs in an aqueous environment, in which...
In this work we present evidence that water molecules are actively involved on the control of bindin...
Water molecules at the surface of DNA are critical to its equilibrium structure, DNA–protein functi...
Water molecules at the surface of DNA are critical to its equilibrium structure, DNA–protein functi...
Actiaomycin-D (actD) binds to natural DNA at two different classes of binding sites, weak and strong...
Ligand binding to minor-grooves of DNA depends on DNA-base sequence near its binding-site. However, ...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...