Riggins James N, Daniels J Scott, Rouzer Carol A, Marnett Lawrence J
A. B. Hancock Jr. Memorial Laboratory for Cancer Research, Departments of Biochemistry and Chemistry, Vanderbilt Institute of Chemical Biology, Vanderbilt University School of Medicine, Nashville, TN 37232-0146, USA.
J Am Chem Soc. 2004 Jul 7;126(26):8237-43. doi: 10.1021/ja040009r.
3-(2'-Deoxy-beta-D-erythro-pentofuranosyl)pyrimido[1,2-alpha]purin-10(3H)-one (M1dG) is the major reaction product of deoxyguanosine with malondialdehyde or base propenals. M1dG undergoes hydrolytic ring-opening to N2-oxopropenyl-deoxyguanosine (N2OPdG) under basic conditions. We report that ring-opening of M1dG as a nucleoside or in oligonucleotides is a reversible second-order reaction with hydroxide ion. NMR and UV analysis revealed N2OPdG(-) to be the only product of M1dG ring-opening in basic solution. The rate constant for reaction of M1dG with hydroxide is 3.8 M(-1) s(-1), and the equilibrium constant is calculated to be 2.1 +/- 0.3 x 10(4) M(-1) at 25 degrees C. Equilibrium constants determined by spectroscopic analysis of the reaction end-point or by thermodynamic analysis of rate constants determined over a range of temperatures yielded a value 2.5 +/- 0.2 x 10(4) M(-1). Kinetic analysis of ring-opening of M1dG in oligonucleotides indicated the rate constant for ring-opening is decreased 10-fold compared to that in the nucleoside. Flanking purines or pyrimidines did not significantly alter the rate constants for ring-opening, but purines flanking M1dG enhanced the rate constant for the reverse reaction. A mechanism is proposed for ring-opening of M1dG under basic conditions and a role is proposed for duplex DNA in accelerating the rate of ring-opening of M1dG at neutral pH.
3-(2'-脱氧-β-D-赤型-呋喃戊糖基)嘧啶并[1,2-α]嘌呤-10(3H)-酮(M1dG)是脱氧鸟苷与丙二醛或碱基丙烯醛反应的主要产物。在碱性条件下,M1dG会发生水解开环反应生成N2-氧代丙烯基-脱氧鸟苷(N2OPdG)。我们报道,M1dG作为核苷或在寡核苷酸中的开环反应是与氢氧根离子的可逆二级反应。核磁共振和紫外分析表明,N2OPdG(-)是碱性溶液中M1dG开环的唯一产物。M1dG与氢氧根反应的速率常数为3.8 M(-1) s(-1),在25℃时计算得到的平衡常数为2.1±0.3×10(4) M(-1)。通过反应终点的光谱分析或在一系列温度下测定的速率常数的热力学分析确定的平衡常数为2.5±0.2×10(4) M(-1)。对寡核苷酸中M1dG开环的动力学分析表明,其开环速率常数相比于核苷降低了10倍。M1dG两侧的嘌呤或嘧啶对其开环速率常数没有显著影响,但M1dG两侧的嘌呤会提高其逆反应的速率常数。本文提出了碱性条件下M1dG开环的机制,并提出了双链DNA在中性pH下加速M1dG开环速率中的作用。