Gao Dayuan, Luo Yunjing, Guevara Denise, Wang Yongyin, Rui Mei, Goldwyn Billie, Lu Yuhun, Smith Elizabeth C A, Lebwohl Mark, Wei Huachen
Department of Dermatology, Mount Sinai School of Medicine, 1425 Madison Avenue, Box 1047, New York, NY 10029, USA.
Free Radic Biol Med. 2005 Nov 1;39(9):1177-83. doi: 10.1016/j.freeradbiomed.2005.06.005.
We previously reported that benzo[a]pyrene (BaP) and UVA radiation synergistically induced oxidative DNA damage via 8-hydroxy-2'-deoxyguanosine (8-OHdG) formation in vitro. The present study shows that microsomal BaP metabolites and UVA radiation potently enhance 8-OHdG formation in calf thymus DNA about 3-fold over the parent compound BaP. Utilization of various reactive oxygen species scavengers revealed that singlet oxygen and superoxide radical anion were involved in the 8-OHdG formation induced by microsomal BaP metabolites and UVA. Two specific BaP metabolites, benzo[a]pyrene-r-7,t-8-dihydrodiol-t-9,10-epoxide (+/-) (anti) (BPDE) and BaP-7,8-dione, were further tested for synergism with UVA. BaP-7,8-dione showed an effect on 8-OHdG formation induced by UVA radiation that was similar to that of the parent BaP, whereas BPDE exhibited significantly higher induction of 8-OHdG than BaP. At as low as 0.5 microM, BPDE plus UVA radiation substantially increased 8-OHdG levels about 25-fold over the parent BaP. BPDE increased the formation of 8-OHdG levels in both BPDE concentration- and UVA dose-dependent manners. Additionally, singlet oxygen was found to play a major role in 8-OHdG induction by BPDE and UVA. These results suggest that BaP metabolites such as BPDE synergize with UVA radiation to produce ROS, which in turn induce DNA damage.
我们之前报道过,苯并[a]芘(BaP)和紫外线A(UVA)辐射在体外通过8-羟基-2'-脱氧鸟苷(8-OHdG)的形成协同诱导氧化性DNA损伤。本研究表明,微粒体BaP代谢物和UVA辐射能显著增强小牛胸腺DNA中8-OHdG的形成,比母体化合物BaP高出约3倍。使用各种活性氧清除剂的研究表明,单线态氧和超氧阴离子自由基参与了微粒体BaP代谢物和UVA诱导的8-OHdG形成。进一步测试了两种特定的BaP代谢物,苯并[a]芘-r-7,t-8-二氢二醇-t-9,10-环氧化物(±)(反式)(BPDE)和BaP-7,8-二酮与UVA的协同作用。BaP-7,8-二酮对UVA辐射诱导的8-OHdG形成的影响与母体BaP相似,而BPDE对8-OHdG的诱导作用明显高于BaP。在低至0.5微摩尔时,BPDE加UVA辐射使8-OHdG水平比母体BaP大幅增加约25倍。BPDE以BPDE浓度和UVA剂量依赖的方式增加8-OHdG水平的形成。此外,发现单线态氧在BPDE和UVA诱导8-OHdG中起主要作用。这些结果表明,诸如BPDE之类的BaP代谢物与UVA辐射协同产生活性氧,进而诱导DNA损伤。