TY - JOUR
T1 - Benzo[a]pyrene and its metabolites combined with ultraviolet a synergistically induce 8-hydroxy-2′-deoxyguanosine via reactive oxygen species
AU - Gao, Dayuan
AU - Luo, Yunjing
AU - Guevara, Denise
AU - Wang, Yongyin
AU - Rui, Mei
AU - Goldwyn, Billie
AU - Lu, Yuhun
AU - Smith, Elizabeth C.A.
AU - Lebwohl, Mark
AU - Wei, Huachen
PY - 2005/11/1
Y1 - 2005/11/1
N2 - 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 μM, 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.
AB - 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 μM, 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.
KW - 8-Hydroxy-2′- deoxyguanosine
KW - BPDE
KW - Benzo[a]pyrene
KW - Free radicals
KW - Metabolite
KW - Singlet oxygen
KW - Ultraviolet A
UR - http://www.scopus.com/inward/record.url?scp=26044473908&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=26044473908&partnerID=8YFLogxK
U2 - 10.1016/j.freeradbiomed.2005.06.005
DO - 10.1016/j.freeradbiomed.2005.06.005
M3 - Article
C2 - 16214033
AN - SCOPUS:26044473908
SN - 0891-5849
VL - 39
SP - 1177
EP - 1183
JO - Free Radical Biology and Medicine
JF - Free Radical Biology and Medicine
IS - 9
ER -