Wang Ping, Polce Michael J, Ohanessian Gilles, Wesdemiotis Chrys
Department of Chemistry, The University of Akron, Akron, Ohio 44325-3601, USA.
J Mass Spectrom. 2008 Apr;43(4):485-94. doi: 10.1002/jms.1336.
The sodium ion affinities of cytosine (Cyt), 5-methylcytosine (5MeCyt) and 1-methylcytosine (1MeCyt) have been determined by experimental and quantum chemical methods. Na(+)-bound heterodimers were produced carrying one cytosine or methylated cytosine ligand (designated as C) and one peptide or amino acid reference base (designated as Pep); the Pep molecules included the peptides GlyLeu, GlyPhe, SerGly, and PheGly, and the amino acid His. The dissociation kinetics of these C--Na(+)--Pep ions were determined by collisionally activated dissociation (CAD) and converted to relative and absolute Na(+) affinities via kinetic method approaches. Relative Na(+) affinities increase in the order (kJ/mol): GlyLeu (0) < Cyt (3) < GlyPhe (4) < SerGly (6) < 5MeCyt (8) < PheGly (11) < 1MeCyt (13) < His (17). Anchoring the relative values of the nucleobases to the absolute affinities of the reference bases leads to absolute Na(+) affinities of 214 +/- 8, 219 +/- 8, and 224 +/- 8 kJ/mol for Cyt, 5MeCyt, and 1MeCyt, respectively. Ab initio calculations were used to confirm these results. The computed affinities of Cyt (213 kJ/mol) and 1MeCyt (217 kJ/mol) are in very good agreement with the experiments. These values unambiguously correspond to Na(+) complexes with the keto form of cytosine and its methyl derivatives. Ab initio calculations on tautomerization mechanisms in the gas versus condensed phase are used to discuss why the sodiated keto isomers were formed in the present electrospray ionization (ESI) experiments, but the enol isomers in previous fast atom bombardment (FAB) experiments.
通过实验和量子化学方法测定了胞嘧啶(Cyt)、5-甲基胞嘧啶(5MeCyt)和1-甲基胞嘧啶(1MeCyt)的钠离子亲和力。制备了携带一个胞嘧啶或甲基化胞嘧啶配体(标记为C)和一个肽或氨基酸参考碱基(标记为Pep)的钠结合异二聚体;Pep分子包括肽GlyLeu、GlyPhe、SerGly和PheGly,以及氨基酸His。通过碰撞激活解离(CAD)测定这些C--Na(+)--Pep离子的解离动力学,并通过动力学方法转化为相对和绝对的Na(+)亲和力。相对Na(+)亲和力按以下顺序增加(kJ/mol):GlyLeu(0)<Cyt(3)<GlyPhe(4)<SerGly(6)<5MeCyt(8)<PheGly(11)<1MeCyt(13)<His(17)。将核碱基的相对值与参考碱基的绝对亲和力相关联,得到Cyt、5MeCyt和1MeCyt的绝对Na(+)亲和力分别为214±8、219±8和224±8 kJ/mol。使用从头算计算来证实这些结果。计算得到的Cyt(213 kJ/mol)和1MeCyt(217 kJ/mol)的亲和力与实验结果非常吻合。这些值明确对应于与胞嘧啶及其甲基衍生物的酮式形成的Na(+)配合物。利用气相与凝聚相中的互变异构化机制的从头算计算来讨论为什么在当前的电喷雾电离(ESI)实验中形成了钠化酮异构体,而在先前的快原子轰击(FAB)实验中形成了烯醇异构体。