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Sequence specificity of adriamycin-DNA adducts in human tumor cells
Suzanne M Cutts1, Lonnie P Swift, Ada Rephaeli
1Department of Biochemistry, La Trobe University, Victoria, 3086, Australia. s.cutts@latrobe.edu.au
Abstract:
The anticancer anthracycline compound Adriamycin is a known topoisomerase II inhibitor but is also capable of exerting other cellular consequences. After intercalation, Adriamycin can form covalent adducts with DNA, and the magnitude of these adducts appears to be limited by the cellular availability of formaldehyde. Adducts produced by Adriamycin in the presence of formaldehyde have been well characterized in cell-free systems but not in cells. In this study, we show that when Adriamycin is used in conjunction with the formaldehyde-releasing prodrug AN-9 in IMR-32 tumor cells, this allows the formation of sufficiently high levels of adducts in genomic DNA to enable detection of their DNA sequence specificity for the first time. The 340-bp alpha-satellite EcoRI repeat sequence was isolated from drug-treated cells and digested with lambda-exonuclease to determine adduct sites at which exonuclease digestion was blocked. The Adriamycin adducts were formed predominantly at 5'-GC and GG sequences and unstable with respect to elevated temperatures and extended times at 37 degrees C. The use of three anthracycline derivatives lacking a 3'amino group demonstrated that this amino portion is critical for the formation of anthracycline adducts in cells. The structure of these drug-DNA adducts can therefore be considered to be identical to the Adriamycin adducts, which have been characterized rigorously in cell-free systems by X-ray crystallography, two-dimensional nuclear magnetic resonance, and mass spectrometry.
Insights
Adriamycin, an anticancer drug, forms DNA adducts in tumor cells when combined with AN-9. These adducts, primarily at GC and GG sequences, were detected in genomic DNA for the first time, revealing sequence specificity.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Adriamycin (doxorubicin) is an anthracycline anticancer drug.
- It functions as a topoisomerase II inhibitor and forms DNA adducts.
- Formaldehyde availability influences Adriamycin-DNA adduct formation in cell-free systems.
Purpose of the Study:
- To investigate Adriamycin-DNA adduct formation in intact tumor cells.
- To determine the DNA sequence specificity of these adducts.
- To explore the role of the 3'amino group in adduct formation.
Main Methods:
- Treatment of IMR-32 tumor cells with Adriamycin and AN-9.
- Isolation of the alpha-satellite EcoRI repeat sequence from genomic DNA.
- Lambda-exonuclease digestion to identify adduct sites.
- Analysis of Adriamycin derivatives lacking a 3'amino group.
Main Results:
- Adriamycin and AN-9 enabled the detection of DNA adducts in genomic DNA.
- Adducts were predominantly formed at 5'-GC and GG sequences.
- The 3'amino group of Adriamycin is critical for cellular adduct formation.
- Adducts showed instability at elevated temperatures and prolonged incubation.
Conclusions:
- This study demonstrates the sequence specificity of Adriamycin-DNA adducts in cells for the first time.
- The 3'amino group is essential for Adriamycin's ability to form adducts within cells.
- The findings provide insights into the mechanism of Adriamycin's action and potential for drug development.