Synthesis and structure determination of the adducts formed by electrochemical oxidation of dibenzo[a,l]pyrene in the presence of adenine

Citation
Km. Li et al., Synthesis and structure determination of the adducts formed by electrochemical oxidation of dibenzo[a,l]pyrene in the presence of adenine, CHEM RES T, 12(9), 1999, pp. 749-757
Citations number
26
Categorie Soggetti
Pharmacology & Toxicology
Journal title
CHEMICAL RESEARCH IN TOXICOLOGY
ISSN journal
0893228X → ACNP
Volume
12
Issue
9
Year of publication
1999
Pages
749 - 757
Database
ISI
SICI code
0893-228X(199909)12:9<749:SASDOT>2.0.ZU;2-X
Abstract
Because the radical cations of polycyclic aromatic hydrocarbons (PAH) are i nvolved in tumor initiation, determination of the structures of biologicall y formed PAH-DNA adducts is important and relies on comparison of their pro perties with those of synthesized adducts. One of the possible sites of add uct formation is the N-3 position of Ade, but this depurinating adduct is n ot obtained by one-electron oxidation of dibenzo[a,l]pyrene (DB[a,l]P) in t he presence of deoxyadenosine. Therefore, we turned to electrochemical oxid ation of DB [a,l]P in the presence of Ade in dimethylformamide and produced the following adducts: DB [a,l]P-10-N1Ade (47%), DB[a,l]P-10-N3Ade (5%), D B[a,l]P-10-N7Ade (2%), and DB[a,l]P-10-N(6)Ade (6%). In Me2SO, this reactio n afforded the same four adducts, but in slightly different yields: DB[a,l] P-10-N1Ade (44%), DB[a,l]P-10-N3Ade (9%), DB[a,l]P-10-N7Ade( 1%), and DB[a, l]P-10-N(6)Ade (3%). These adducts were purified by reverse-phase HPLC, and the subtle differences between the isomers were revealed by NMR, tandem ma ss spectrometry, and fluorescence line-narrowing spectroscopy. The relative yields of the N1Ade, N3Ade, and N7Ade adducts reflect the nucleophilicity and steric accessibility of these three nitrogen atoms in Ade.