Induction of Reversible Complexes between Eukaryotic DNA Topoisomerase I and DNA-containing Oxidative Base Damages

Philippe Pourquier, Li-Ming Ueng, Jolanta Fertala, David Wang, Hyun-Ju Park, John M. Essigmann, Mary-Ann Bjornsti, Yves Pommier
1999 Journal of Biological Chemistry  
We recently showed that abasic sites, uracil mismatches, nicks, and gaps can trap DNA topoisomerase I (top1) when these lesions are introduced in the vicinity of a top1 cleavage site (Pourquier, P., Ueng, L.-M., Kohlhagen, G.In this study, we investigated the effects on top1 of an abundant base damage generated by various oxidative stresses: 7,8-dihydro-8-oxoguanine (8-oxoG). Using purified eukaryotic top1 and oligonucleotides containing the 8-oxoG modification, we found a 3-7-fold increase in
more » ... op1-mediated DNA cleavage when 8-oxoG was present at the ؉1 or ؉2 position relative to the cleavage site. Another oxidative lesion, 5-hydroxycytosine, also enhanced top1 cleavage by 2-fold when incorporated at the ؉1 position of the scissile strand. 8-oxoG at the ؉1 position enhanced noncovalent top1 DNA binding and had no detectable effect on DNA religation or on the incision step. top1 trapping by 8-oxoG was markedly enhanced when asparagine adjacent to the catalytic tyrosine was mutated to histidine, suggesting a direct interaction between this residue and the DNA major groove immediately downstream from the top1 cleavage site. Altogether, these results demonstrate that oxidative base lesions can increase top1 binding to DNA and induce top1 cleavage complexes.
doi:10.1074/jbc.274.13.8516 pmid:10085084 fatcat:lr7efcx27nfordjhkh4qko4fsi