Amsacrine is an anilinoacridine derivative anticancer drug, used to treat a wide variety of malignancies. In cells, amsacrine poisons topoisomerase 2 by stabilizing DNA-drug-enzyme ternary complex. Presence of amsacrine increases the steady-state concentration of these ternary complexes which in turn hampers DNA replication and results in subsequent cell death. Due to reversible binding and rapid slip-out of amsacrine from DNA duplex, structural data is not available on amsacrine-DNA complexes. In the present work, we designed five oligonucleotide duplexes, differing in their minor groove widths and hydration pattern, and examined their binding with amsacrine using attenuated total reflection Fourier transform infrared (ATR-FTIR) spectrosco...
AbstractCurrently, little is known about the molecular recognition pathways between DNA-alkylating a...
It is known that aziridines and nitrogen mustards exert their biological activities, especially in c...
Antitumor drugs, such as anthracyclines, interfere with mammalian DNA topoisomerase II by forming a ...
Amsacrine is an anilinoacridine derivative anticancer drug, used to treat a wide variety of malignan...
Proper understanding of the mechanism of binding of drugs to their targets in cell is a fundamental ...
DNA intercalating and minor groove binding compounds are new weapons in the battle against malignant...
AbstractCytotoxicity of several classes of antitumor DNA intercalators is thought to result from dis...
DNA intercalating and minor groove binding compounds are new weapons in the battle against malignant...
To identify structural determinants for the sequence-specific recognition of covalent topoisomerase ...
AbstractCytotoxicity of several classes of antitumor DNA intercalators is thought to result from dis...
Diploid human fibroblast strains were treated for 10 min with inhibitors of type I and type II DNA t...
Diploid human fibroblast strains were treated for 10 min with inhibitors of type I and type II DNA t...
AbstractTheoretical quantitative evaluation of the intercalative binding to DNA of the new antitumor...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...
AbstractCurrently, little is known about the molecular recognition pathways between DNA-alkylating a...
It is known that aziridines and nitrogen mustards exert their biological activities, especially in c...
Antitumor drugs, such as anthracyclines, interfere with mammalian DNA topoisomerase II by forming a ...
Amsacrine is an anilinoacridine derivative anticancer drug, used to treat a wide variety of malignan...
Proper understanding of the mechanism of binding of drugs to their targets in cell is a fundamental ...
DNA intercalating and minor groove binding compounds are new weapons in the battle against malignant...
AbstractCytotoxicity of several classes of antitumor DNA intercalators is thought to result from dis...
DNA intercalating and minor groove binding compounds are new weapons in the battle against malignant...
To identify structural determinants for the sequence-specific recognition of covalent topoisomerase ...
AbstractCytotoxicity of several classes of antitumor DNA intercalators is thought to result from dis...
Diploid human fibroblast strains were treated for 10 min with inhibitors of type I and type II DNA t...
Diploid human fibroblast strains were treated for 10 min with inhibitors of type I and type II DNA t...
AbstractTheoretical quantitative evaluation of the intercalative binding to DNA of the new antitumor...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...
RT29 is a dicationic diamidine derivative that does not obey the classical “rules” for shape and fun...
AbstractCurrently, little is known about the molecular recognition pathways between DNA-alkylating a...
It is known that aziridines and nitrogen mustards exert their biological activities, especially in c...
Antitumor drugs, such as anthracyclines, interfere with mammalian DNA topoisomerase II by forming a ...