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Interaction of Cisplatin with 5 '-dGMP: A Combined IRMPD and Theoretical Study

机译:顺铂与5'-dGMP的相互作用:IRMPD和理论研究的结合

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IR multiple photon dissociation (IRMPD) spectroscopy of cis-[Pt(NH3)(2)(5'-dGMPH)](+) and cis-[PtCl(NH3)(2)(5'-dGMP)](+) ions (where 5'-dGMP is 2'-deoxyguanosine-5'-monophosphate), generated in the gas phase by electrospray ionization, was performed in two spectral regions, namely, 700-1900 cm1 and 2800-3800 cm(-1). For structural assignment, experimental IRMPD spectra were compared to IR spectra computed at the B3LYP/LACV3P/6-311G** level of theory. In agreement with computational results, the vibrational spectroscopic characterization of the cis-[Pt(NH3)(2)(5'-dGMPH)](+) ion points to macrochelate species resulting from the simultaneous interaction of the metal with both the N7 atom of the guanine residue and an O atom of the phosphate group, structures that bear features in common with those characterized in solution by NMR spectroscopy. Concerning the cis-[PtCl(NH3)(2)(5'-dGMP)](+) ion, our study points to a monodentate complex involving exclusively the N7 position of guanine, as observed in solution. Also this species exhibits a compact form due to the formation of two hydrogen bonds involving the same ammonia ligand. For both complexes, IRMPD experiments show that a strong intramolecular hydrogen bond is established between one ammonia hydrogen and the carbonyl group of guanine. The strength of this particular interaction can be qualitatively estimated by looking at the redshift of the CO vibration with respect to an unperturbed C=O stretching mode in the fingerprint region. This point is also highlighted in the XH (X = N, O) stretch region, by the shift of the NH stretch frequency as a function of the number of hydrogen bonds involving the ammonia ligand.
机译:顺式-[Pt(NH3)(2)(5'-dGMPH)](+)和顺式-[PtCl(NH3)(2)(5'-dGMP)](+)的红外多光子离解(IRMPD)光谱通过电喷雾电离在气相中产生的离子(其中5'-dGMP是2'-脱氧鸟苷-5'-单磷酸)在两个光谱区域内执行,即700-1900 cm1和2800-3800 cm(-1) 。对于结构分配,将实验的IRMPD光谱与在B3LYP / LACV3P / 6-311G **理论水平计算的IR光谱进行比较。与计算结果一致,顺式-[Pt(NH3)(2)(5'-dGMPH)](+)离子的振动光谱表征指向金属与N7原子同时相互作用产生的大螯合物。鸟嘌呤残基和磷酸基团的O原子的结构,具有与通过NMR光谱法在溶液中表征的那些特征相同的特征。关于顺式-[PtCl(NH3)(2)(5'-dGMP)](+)离子,我们的研究表明,在溶液中观察到的单齿复合物仅包含鸟嘌呤的N7位置。另外,由于两个涉及相同氨配体的氢键的形成,该物质也表现出致密形式。对于两种配合物,IRMPD实验表明在一个氨氢和鸟嘌呤的羰基之间建立了强大的分子内氢键。可以通过查看CO振动相对于指纹区域中不受干扰的C = O拉伸模式的红移,来定性地估计此特定交互的强度。这一点在XH(X = N,O)拉伸区域中也得到了突出显示,这是因为NH拉伸频率随涉及氨配体的氢键数量的变化而变化。

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