Hou Ruobing, Gu Jiande, Xie Yaoming, Yi Xianghui, Schaefer Iii Henry F
Center for Computational Chemistry, University of Georgia, Athens, Georgia 30602-2525, USA.
J Phys Chem B. 2005 Nov 24;109(46):22053-60. doi: 10.1021/jp0524375.
The 2'-deoxyadenosine-5'-phosphate (5'-dAMP) anion and its related radicals have been studied by reliably calibrated theoretical approaches. This study reveals important physical characteristics of 5'-dAMP radical related processes. One-electron oxidation of the 5'-dAMP anion is found on both the phosphoryl group and the adenine base with electron detachment energies close to that of phosphate. Partial removal of electron density from the adenine fragment leads to an extended pi system which includes the amine group of the adenine. Although the radical-centered carbon increases the extent of bonding with its adjacent atoms, it usually weakens the chemical bonds between the atoms at the alpha- and beta-positions. This tendency should be important in predicting the reactivity of the sugar-based radicals. The overall stability sequence of the H-abstracted 5'-dAMP anionic radicals is consistent with the analogous results for the H-abstracted neutral radicals of the adenosine nucleoside: aliphatic radicals > aromatic radicals. The negatively charged phosphoryl group attached to atom C(5)' of the ribose does not change this energetic sequence. All the H-abstraction produced 5'-dAMP radical anions are distonic radical anions. Studies have shown that the charge-radical-separating feature of the distonic radical anions is biologically relevant. This result should be important in understanding the reactive properties of these H-abstraction-produced anion radicals.
已通过可靠校准的理论方法对2'-脱氧腺苷-5'-磷酸(5'-dAMP)阴离子及其相关自由基进行了研究。该研究揭示了5'-dAMP自由基相关过程的重要物理特性。发现5'-dAMP阴离子在磷酰基和腺嘌呤碱基上均发生单电子氧化,其电子脱离能接近磷酸盐的电子脱离能。从腺嘌呤片段部分去除电子密度会导致一个扩展的π体系,其中包括腺嘌呤的胺基。尽管以自由基为中心的碳原子增加了与其相邻原子的键合程度,但它通常会削弱α位和β位原子之间的化学键。这种趋势在预测糖基自由基的反应性方面应该很重要。氢原子提取后的5'-dAMP阴离子自由基的总体稳定性顺序与腺苷核苷氢原子提取后的中性自由基的类似结果一致:脂肪族自由基>芳香族自由基。连接在核糖C(5)'原子上的带负电荷的磷酰基不会改变这种能量顺序。所有氢原子提取产生的5'-dAMP自由基阴离子都是非定域自由基阴离子。研究表明,非定域自由基阴离子的电荷-自由基分离特征与生物学相关。这一结果对于理解这些氢原子提取产生的阴离子自由基的反应特性应该很重要。