Natural products that bind to DNA in the minor groove are valuable templates for drug design. Examples include distamycin, netropsin, duocarmycin and anthramycin. Anticancer and anti-infective drugs feature strongly amongst their derivatives. The structures and activities of chemotypes with various therapeutic actions are discussed in the context of the broader field of therapeutically active minor groove binders. The evolution of a series of exceptionally potent and nontoxic antibacterial compounds is discussed using the general design principle of introducing additional hydrophobicity into the distamycin template to increase the strength of binding to DNA. As well as potent antibacterial compounds, antifungal and antiparasitic compounds w...
It goes without saying now that there is a severe risk to health world wide because of the continued...
Abstract: It is known that DNA is a well-characterized intracellular target but its size and sequent...
A critical factor in the design of effective drugs is the specificity of the drug/target interaction...
The synthesis and biological activity of a variety of analogues to the naturally occurring anti-bact...
Several classes of compounds, including heterocyclic polyamides, aryl benzimidazoles, pyrrolobenzodi...
Minor groove binders are small molecules that form strong complexes with the minor groove of DNA. Th...
The polyamide minor groove binders (MGBs), distamycin and netropsin, have been known for many years ...
Minor groove binders are one of the most widely studied class of agents characterized by a high leve...
The role of the naturally occurring polyamides distamycin and netropsin as antibacterial agents is d...
A review. Analogs of naturally occurring antitumor agents, such as distamycin A, which bind in the ...
DNA minor groove binders constitute an important class of derivatives in anticancer therapy. Some of...
Minor groove binders are one of the most widely studied class of agents characterized by a high leve...
A review with 39 refs. Analogs of naturally occurring antitumor agents, such us distamycin A, which...
Anti-infective and anticancer drugs share the serious problem that over time resistance develops to ...
Minor groove binders are one of the most widely studied class of agents characterized by a high leve...
It goes without saying now that there is a severe risk to health world wide because of the continued...
Abstract: It is known that DNA is a well-characterized intracellular target but its size and sequent...
A critical factor in the design of effective drugs is the specificity of the drug/target interaction...
The synthesis and biological activity of a variety of analogues to the naturally occurring anti-bact...
Several classes of compounds, including heterocyclic polyamides, aryl benzimidazoles, pyrrolobenzodi...
Minor groove binders are small molecules that form strong complexes with the minor groove of DNA. Th...
The polyamide minor groove binders (MGBs), distamycin and netropsin, have been known for many years ...
Minor groove binders are one of the most widely studied class of agents characterized by a high leve...
The role of the naturally occurring polyamides distamycin and netropsin as antibacterial agents is d...
A review. Analogs of naturally occurring antitumor agents, such as distamycin A, which bind in the ...
DNA minor groove binders constitute an important class of derivatives in anticancer therapy. Some of...
Minor groove binders are one of the most widely studied class of agents characterized by a high leve...
A review with 39 refs. Analogs of naturally occurring antitumor agents, such us distamycin A, which...
Anti-infective and anticancer drugs share the serious problem that over time resistance develops to ...
Minor groove binders are one of the most widely studied class of agents characterized by a high leve...
It goes without saying now that there is a severe risk to health world wide because of the continued...
Abstract: It is known that DNA is a well-characterized intracellular target but its size and sequent...
A critical factor in the design of effective drugs is the specificity of the drug/target interaction...