DETECTION OF DEOXYADENOSINE-4-AMINOBIPHENYL ADDUCT IN DNA OF HUMAN UROEPITHELIAL CELLS TREATED WITH N-HYDROXY-4-AMINOBIPHENYL FOLLOWING NUCLEASE P1 ENRICHMENT AND P-32 POSTLABELING ANALYSIS
Jf. Hatcher et S. Swaminathan, DETECTION OF DEOXYADENOSINE-4-AMINOBIPHENYL ADDUCT IN DNA OF HUMAN UROEPITHELIAL CELLS TREATED WITH N-HYDROXY-4-AMINOBIPHENYL FOLLOWING NUCLEASE P1 ENRICHMENT AND P-32 POSTLABELING ANALYSIS, Carcinogenesis, 16(2), 1995, pp. 295-301
To characterize the DNA adducts in human uroepithelial cells (HUC) exp
osed to 4-aminobiphenyl and its proximate N-hydroxy metabolites, we us
ed P-32-postlabeling analyses following butanol extraction of the DNA
hydrolysates. Using this method, we identified oxyguanosin-3',5'-bisph
ospho-8-yl)-4-aminobiphenyl (pdGp-ABP) as a major adduct and (deoxyade
nosin-3',5'-bisphospho-8-yl)aminobiphenyl (pdAp-ABP) as a minor adduct
in an immortalized non-tumorigenic cell line of HUC following exposur
e to N-hydroxy-4-aminobiphenyl (N-OH-ABP). Towards characterization of
pdAp-ABP, we postlabeled the synthetic N-(deoxyadenosin-3'-phospho-8-
yl)-4-aminobiphenyl (dAp-ABP) adduct to generate pdAp-ABP and determin
ed its chromatographic (TLC and HPLC) properties and sensitivity to nu
clease PI digestion. In contrast to pdGp-ABP, which was cleaved to the
corresponding 5'-monophosphate by nuclease P1, the pdAp-ABP adduct wa
s unaffected when incubated with nuclease P1 under similar conditions.
To test whether nuclease P1 digestion could be adopted for enrichment
of the dAp-ABP adduct in HUC samples, postlabeling analyses were carr
ied out after butanol extraction following nuclease P1 digestion of th
e DNA hydrolysate. Under these conditions, the pdAp-ABP adduct was det
ected in DNA from HUC E7 cells treated with NOH-ABP and in calf thymus
DNA reacted with N-OH-ABP under acidic (pH 5.0) conditions. These dat
a indicate that pdGp-ABP and pdAp-ABP adducts are generated in HUC E7
on treatment with N-OH-ABP and that nuclease P1 enrichment may provide
a method for qualitative and quantitative analyses of the pdAp-ABP ad
duct in DNA.