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Conformational landscapes of aromatic amino acids in the gas phase: Infrared and ultraviolet ion dip spectroscopy of tryptophan

机译:气相中芳香族氨基酸的构象图谱:色氨酸的红外和紫外离子浸没光谱

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摘要

The conformational structures of tryptophan, isolated in the gas phase, have been assigned by combining the results of ultraviolet hole-burning and infrared ion dip spectroscopy with the predictions of ab initio calculations conducted at the MP2/6-311+G(d,p)//B3LYP/6-31+G(d) levels of theory. As in phenylalanine, the most strongly populated, and lowest energy conformer presents a folded alanyl side chain that is stabilised by a 'daisy chain' of hydrogen-bonded interactions. These link the acidic proton, the amino group and the indole ring. There is a further interaction between the carbonyl oxygen and the neighbouring CH group on the pyrrole ring. A quantitative evaluation of the dipole-dipole interactions between the alanyl side chain and the indole ring in the L-1(a) and L-1(b) electronic states does not support the suggestion of electronic state mixing. In particular it casts doubt on the assignment of the fluorescence of the most stable, 'special' conformer to emission from the L-1(a) state. [References: 39]
机译:通过将紫外空穴燃烧和红外离子浸没光谱的结果与在MP2 / 6-311 + G(d,p中进行的从头算的预测)相结合,确定了在气相中分离出的色氨酸的构象结构)// B3LYP / 6-31 + G(d)的理论水平。与苯丙氨酸一样,人口最稠密,能量最低的构象异构体呈现出折叠的丙氨酰基侧链,该链通过氢键相互作用的“菊花链”稳定。这些连接酸性质子,氨基和吲哚环。羰基氧与吡咯环上相邻的CH基团之间还有进一步的相互作用。定量评估L-1(a)和L-1(b)电子态中丙氨酰基侧链与吲哚环之间的偶极-偶极相互作用不支持电子态混合的建议。特别是,它对最稳定的“特殊”构象荧光与L-1(a)态发射的荧光分配产生怀疑。 [参考:39]

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