Institut für Physikalische und Theoretische Chemie, Goethe-Universität, Max-von-Laue-Straße 7, 60438 Frankfurt/Main, Germany.
Phys Chem Chem Phys. 2013 Jul 21;15(27):11520-30. doi: 10.1039/c3cp50337b. Epub 2013 Jun 10.
The vibrational fingerprints of hydrogen-bonding associated with the adenine-thymine (A-T) Watson-Crick (WC) base pair have been identified in an infrared study of the A-T mimics 4-aminopyrimidine-1-methylthymine (4APM-1MT) and 4-aminopyrimidine-6-methyl-4-pyrimidinone (4APM-M4PMN) in the gas-phase. The IR vibrational spectra were measured via a double resonance scheme utilizing femtosecond multiphoton ionization. The changes in the molecular structure, anharmonic vibrational parameters, and the assignment of the observed vibrational spectra in the NH/CH stretch region were investigated by carrying out high-level theoretical calculations of the anharmonic spectra. The experimental observations and theoretical calculations indicate that the hydrogen bonds associated with WC base-pairing are relatively stronger than those associated with reverse WC (rWC) base pairing. This is manifested in a more pronounced red-shift of the H-bonded vibrational modes associated with the WC as compared with the rWC base-pairing. An analysis of the factors contributing to the anharmonicity of the vibrational modes associated with H-bonding reveals that the magnitude of the off-diagonal anharmonic coupling of the H-bonded -NH2 stretch and the -NH2 bend is much smaller in WC base-pairing than in the corresponding rWC base-pairing. The chemical and biological implications of these results, especially in the context of using vibrational spectroscopy as a tool for identifying the signatures of nucleotide base vibrations is addressed.
在气相中对腺嘌呤-胸腺嘧啶(A-T)Watson-Crick(WC)碱基对的氢键相关的振动指纹进行了红外研究,鉴定了 4-氨基嘧啶-1-甲基胸腺嘧啶(4APM-1MT)和 4-氨基嘧啶-6-甲基-4-嘧啶酮(4APM-M4PMN)的 A-T 类似物。IR 振动光谱通过利用飞秒多光子电离的双共振方案进行测量。通过对非谐振动光谱进行高精度理论计算,研究了 NH/CH 伸缩区域中分子结构、非谐振动参数的变化以及观察到的振动光谱的归属。实验观察和理论计算表明,与反向 WC(rWC)碱基配对相比,与 WC 碱基配对相关的氢键相对较强。这表现在与 rWC 碱基配对相比,与 WC 碱基配对相关的氢键振动模式的红移更为明显。对与氢键相关的振动模式的非谐性的因素分析表明,在 WC 碱基配对中,氢键的-NH2 伸缩和-NH2 弯曲的非对角非谐耦合的幅度远小于相应的 rWC 碱基配对。这些结果的化学和生物学意义,特别是在将振动光谱用作识别核苷酸碱基振动特征的工具方面,得到了讨论。