PRODUCTION OF PROTEIN-ASSOCIATED DNA BREAKS BY 8-METHOXYCAFFEINE, CAFFEINE AND 8-CHLOROCAFFEINE IN ISOLATED-NUCLEI FROM L1210 CELLS - COMPARISON WITH THOSE PRODUCED BY TOPOISOMERASE-II INHIBITORS
PRODUCTION OF PROTEIN-ASSOCIATED DNA BREAKS BY 8-METHOXYCAFFEINE, CAFFEINE AND 8-CHLOROCAFFEINE IN ISOLATED-NUCLEI FROM L1210 CELLS - COMPARISON WITH THOSE PRODUCED BY TOPOISOMERASE-II INHIBITORS
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DOI:
10.1093/carcin/12.10.1781
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发表时间:
1991-10-01
期刊:
影响因子:
4.7
通讯作者:
POMMIER, Y
中科院分区:
文献类型:
--
作者:
RUSSO, P;POGGI, L;POMMIER, Y
8-Methoxycaffeine (8-MOC) is a caffeine derivative, more potent than the parent compound, but very similar to caffeine in terms of induction of DNA single-strand breaks (SSBs), DNA double-strand breaks (DSBs) and DNA-protein crosslinks (DPCs). We have studied the capability of 8-MOC, caffeine and 8-chlorocaffeine (8-CC) of inducing SSBs, DSBs and DPCs, and we have compared 8-MOC with ellipticine, a typical inhibitor of DNA topoisomerase II. The DNA effects of 8-MOC appeared similar to those of ellipticine. In both cases SSBs, DSBs and DPCs were present in a similar ratio, and they were rapidly reversible after removal of the drug. The dose-response curve was bell-shaped for both compounds. In addition, 8-MOC, caffeine and 8-CC were capable of inhibiting DSBs induced by ellipticine. These results were obtained at the level of L1210 cell nuclei. In spite of these functional similarities, 8-MOC, caffeine and 8-CC were unable to stimulate the formation of a cleavable complex by purified 1,1210 topoisomerase II (p170 form) when SV40 DNA and human c-myc DNA were used as substrate. These methylated oxypurines could be active on a different form of topoisomerase II, or, alternatively, they could be active only in the natural chromatin 'milieu' within the nucleus.