Infrared Spectroscopy of Hydrated Amino Acids in the Gas Phase:  Protonated and Lithiated Valine

化学 两性离子 溶剂化 质子化 红外光谱学 分子 离解(化学) 红外多光子离解 氢键 质子亲和力 结晶学 溶剂化壳 光化学 物理化学 离子 有机化学
作者
Anthi Kamariotis,Oleg V. Boyarkin,Sébastien Mercier,Rainer D. Beck,Matthew F. Bush,Evan R. Williams,Thomas R. Rizzo
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:128 (3): 905-916 被引量:211
标识
DOI:10.1021/ja056079v
摘要

We report here infrared spectra of protonated and lithiated valine with varying degrees of hydration in the gas phase and interpret them with the help of DFT calculations at the B3LYP/6-31++G** level. In both the protonated and lithiated species our results clearly indicate that the solvation process is driven first by solvation of the charge site and subsequently by formation of a second solvation shell. The infrared spectra of Val x Li+ (H2O)4 and Val x H+ (H2O)4 are strikingly similar in the region of the spectrum corresponding to hydrogen-bonded stretches of donor water molecules, suggesting that in both cases similar extended water structures are formed once the charge site is solvated. In the case of the lithiated species, our spectra are consistent with a conformation change of the amino acid backbone from syn to anti accompanied by a change in the lithium binding from a NO coordination to OO coordination configuration upon addition of the third water molecule. This change in the mode of metal ion binding was also observed previously by Williams and Lemoff [J. Am. Soc. Mass Spectrom. 2004, 15, 1014-1024] using blackbody infrared radiative dissociation (BIRD). In contrast to the zwitterion formation inferred from results of the BIRD experiments upon addition of a third water molecule, our spectra, which are a more direct probe of structure, show no evidence for zwitterion formation with the addition of up to four water molecules.
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