Sequence-specific Interactions of Drugs Interfering with the Topoisomerase-DNA Cleavage Complex
Overview
Biophysics
Affiliations
DNA-processing enzymes, such as the topoisomerases (tops), represent major targets for potent anticancer (and antibacterial) agents. The drugs kill cells by poisoning the enzymes' catalytic cycle. Understanding the molecular details of top poisoning is a fundamental requisite for the rational development of novel, more effective antineoplastic drugs. In this connection, sequence-specific recognition of the top-DNA complex is a key step to preferentially direct the action of the drugs onto selected genomic sequences. In fact, the (reversible) interference of drugs with the top-DNA complex exhibits well-defined preferences for DNA bases in the proximity of the cleavage site, each drug showing peculiarities connected to its structural features. A second level of selectivity can be observed when chemically reactive groups are present in the structure of the top-directed drug. In this case, the enzyme recognizes or generates a unique site for covalent drug-DNA binding. This will further subtly modulate the drug's efficiency in stimulating DNA damage at selected sites. Finally, drugs can discriminate not only among different types of tops, but also among different isoenzymes, providing an additional level of specific selection. Once the molecular basis for DNA sequence-dependent recognition has been established, the above-mentioned modes to generate selectivity in drug poisoning can be rationally exploited, alone or in combination, to develop tailor-made drugs targeted at defined loci in cancer cells.
Diazapyrenes: interaction with nucleic acids and biological activity.
Zhirov A, Kovalev D, Ulshina D, Pisarenko S, Demidov O, Borovlev I Chem Heterocycl Compd (N Y). 2020; 56(6):674-693.
PMID: 32836316 PMC: 7366485. DOI: 10.1007/s10593-020-02717-1.
Malina J, Farrell N, Brabec V Angew Chem Int Ed Engl. 2014; 53(47):12812-6.
PMID: 25256921 PMC: 4311996. DOI: 10.1002/anie.201408012.
Malina J, Vrana O, Brabec V Nucleic Acids Res. 2009; 37(16):5432-42.
PMID: 19589806 PMC: 2760795. DOI: 10.1093/nar/gkp580.
Human topoisomerase I poisoning: docking protoberberines into a structure-based binding site model.
Kettmann V, Kostalova D, Holtje H J Comput Aided Mol Des. 2005; 18(12):785-96.
PMID: 16075310 DOI: 10.1007/s10822-004-7878-1.