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November 8, 2002Proceedings of the National Academy of Sciences815 citationsOpen Access

The mechanism of topoisomerase I poisoning by a camptothecin analog

BSBart L. StakerKHKathryn A. HjerrildMFM.D. Feese

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Abstract

We report the x-ray crystal structure of human topoisomerase I covalently joined to double-stranded DNA and bound to the clinically approved anticancer agent Topotecan. Topotecan mimics a DNA base pair and binds at the site of DNA cleavage by intercalating between the upstream (-1) and downstream (+1) base pairs. Intercalation displaces the downstream DNA, thus preventing religation of the cleaved strand. By specifically binding to the enzyme-substrate complex, Topotecan acts as an uncompetitive inhibitor. The structure can explain several of the known structure-activity relationships of the camptothecin family of anticancer drugs and suggests that there are at least two classes of mutations that can produce a drug-resistant enzyme. The first class includes changes to residues that contribute to direct interactions with the drug, whereas a second class would alter interactions with the DNA and thereby destabilize the drug-binding site.

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Staker et al. (2002) studied this question.

synapsesocial.com/papers/6a619092346eb5614926ed90https://doi.org/10.1073/pnas.242259599
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