Molecular modeling studies of the DNA-topoisomerase I ternary cleavable complex with camptothecin

被引:178
作者
Fan, Y [1 ]
Weinstein, JN [1 ]
Kohn, KW [1 ]
Shi, LM [1 ]
Pommier, Y [1 ]
机构
[1] NCI, Mol Pharmacol Lab, Div Basic Sci, NIH, Bethesda, MD 20892 USA
关键词
D O I
10.1021/jm9605445
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The present studies provide a three-dimensional model for the postulated ternary cleavable complex of topoisomerase I(top1), DNA, and camptothecin(CPT). Molecular simulations were done using the AMBER force field. The results suggest that a ternary cleavable complex might be stabilized by several hydrogen bonds in the binding site. In this proposed "drug-stacking" model, CPT is pseudointercalated in the top1-linked DNA cleavage site and interacts with the protein near its catalytic tyrosine through hydrogen bonding and stacking. The structural model is consistent with the following experimental observations: (i) the N3 position of the 5' terminal purine of the cleaved DNA strand is readily alkylated by 7-chloromethyl 10,11-methylenedioxy CPT; (ii) CPT generally tolerates substituents at positions 7, 9, and 10 but is inactivated by additions at position 12; (iii) 10,11-methylenedioxy (MDO) CPT is much more potent than 10,11-dimethoxy (DMO) CPT; (iv) the lactone portion of CPT is essential for top1 inhibitory activity; (v) 20S derivatives of CPT are much more potent than the 20R analogues; (vi) a catalytic tyrosine hydroxyl in top1 covalently links to the 3' terminal base, T, of the cleaved DNA strand; and (vii) top1 mutation Asn722Ser leads to CPT resistance. A total of 18 camptothecin derivatives with different DNA cleavage potencies were docked into the hypothetical cleavable complex binding site to test and refine the model. These studies provide insight into a possible mechanism of top1 inhibition by CPT derivatives and suggest rational approaches for the design of new CPT derivatives.
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页码:2216 / 2226
页数:11
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