A convenient preparative method for the 1,N2-cyclic adducts of guanine nucleosides and nucleotides with crotonaldehyde
摘要:
The treatment of guanine nucleosides and nucleotides with excess crotonaldehyde in pH 8.0 phosphate buffer containing an equimolar amount of L-arginine at 50degreesC for 2 h resulted in the selective formation of the corresponding cyclic 1,N-2 -propano adducts as a mixture of its diastercomers. 0 2002 Elsevier Science Ltd. All rights reserved.
A convenient preparative method for the 1,N2-cyclic adducts of guanine nucleosides and nucleotides with crotonaldehyde
作者:Magoichi Sako、Isamu Yaekura
DOI:10.1016/s0040-4020(02)01047-5
日期:2002.10
The treatment of guanine nucleosides and nucleotides with excess crotonaldehyde in pH 8.0 phosphate buffer containing an equimolar amount of L-arginine at 50degreesC for 2 h resulted in the selective formation of the corresponding cyclic 1,N-2 -propano adducts as a mixture of its diastercomers. 0 2002 Elsevier Science Ltd. All rights reserved.
Cross-Link Dimer Formation of the Acetaldehyde-Derived Cyclic 1,N2-Propano-2'-deoxyguanosine Adduct Using Electrochemical Oxidation
作者:Hiroya Murakami、Yukihiro Esaka、Bunji Uno
DOI:10.1248/cpb.57.1434
日期:——
The electrochemically oxidative lesion of the acetaldehyde-derived cyclic propano adduct 2 of 2′-deoxyguanosine 1 was identified as the cross-linked dimer 4 of adduct 2. Cross-link formation is explained by the nucleophilic preference of the exocyclic amino group in 2 to the carbocation 3 electrogenerated by 1-proton and 2-electron transfers. Dimer formation was also detected in duplex DNA during exposure to acetaldehyde followed by electrochemical oxidation. The dimer has been deduced to be an intrastrand cross-link generated specifically in the G–G sequence in duplex DNA, which is expected to contribute to acetaldehyde-mediated genotoxicity.