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Differential stabilization of eukaryotic DNA topoisomerase I cleavable complexes by camptothecin derivatives
A Tanizawa1, K W Kohn, G Kohlhagen
1Laboratory of Molecular Pharmacology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Abstract:
Camptothecins belong to a group of anticancer agents with a specific mechanism of action: stabilization and trapping of eukaryotic DNA topoisomerase I (top1) cleavable complexes. Two water-soluble camptothecin derivatives are in clinical trial, and their anticancer activity appears promising: topotecan and CPT-11. The latter is hydrolyzed to its active metabolite, SN-38. We have previously reported that SN-38 is among the most cytotoxic camptothecin derivatives and that the cleavable complexes induced by SN-38 are more stable than those induced by CPT in human colon carcinoma cells [Tanizawa et al. (1994) J. Natl. Cancer Inst, 86, 836-842]. Top1 inhibition was further investigated by determining the salt-induced religation rates of top1-cleavable complexes in fragments from the top1 cDNA. Religation depended on both the local DNA base sequence and the drug structure. Cleavable complexes induced by SN-38 and 10,11-methylenedioxycamptothecin were markedly more stable (less rapidly reversible) than those induced by CPT, topotecan, and 9-aminocamptothecin. The stability of 10-hydroxycamptothecin-induced cleavable complexes was intermediate to those of CPT and SN-38, indicating that both the 10-hydroxy and the 7-ethyl group of SN-38 probably interact with the drug binding site of top1-cleavable complexes. A DNA oligonucleotide containing a single top1 cleavage site was also used to compare the camptothecin derivatives. The salt stability of drug-induced cleavable complexes in the top1 oligonucleotide was correlated with the drug potencies to induce top1 cleavage. Cell killing requires that trapped cleavable complexes be converted to DNA damage as a result of replication fork collision.(ABSTRACT TRUNCATED AT 250 WORDS)
Insights
Camptothecin derivatives like SN-38 stabilize DNA topoisomerase I (top1) complexes, enhancing anticancer activity. Complex stability, influenced by DNA sequence and drug structure, correlates with drug potency and cell killing.
Area of Science:
- Pharmacology
- Molecular Biology
- Oncology
Background:
- Camptothecins are anticancer agents targeting eukaryotic DNA topoisomerase I (top1).
- Water-soluble derivatives like topotecan and CPT-11 are in clinical trials.
- CPT-11 is metabolized to SN-38, a potent cytotoxic derivative.
Purpose of the Study:
- To investigate the mechanism of top1 inhibition by camptothecin derivatives.
- To compare the stability of top1-cleavable complexes induced by various camptothecins.
- To correlate complex stability with drug potency and cytotoxicity.
Main Methods:
- Determining salt-induced religation rates of top1-cleavable complexes using top1 cDNA fragments.
- Comparing camptothecin derivatives using a DNA oligonucleotide with a single top1 cleavage site.
Main Results:
- Cleavable complex stability varied with DNA sequence and drug structure.
- SN-38 and 10,11-methylenedioxycamptothecin induced markedly more stable complexes than CPT, topotecan, and 9-aminocamptothecin.
- Complex stability correlated with the drug's potency in inducing top1 cleavage.
Conclusions:
- The 10-hydroxy and 7-ethyl groups of SN-38 likely interact with the top1-cleavable complex binding site.
- Cell killing by camptothecins depends on converting trapped complexes into DNA damage via replication fork collision.
- Drug-induced top1-cleavable complex stability is a key factor in camptothecin anticancer efficacy.