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Revealing the multiple structures of serine

机译:揭示丝氨酸的多种结构

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摘要

We explored the conformational landscape of the proteinogenic amino acid serine [CH_2OH-CH(NH_2)-COOH] in the gas phase. Solid serine was vaporized by laser ablation, expanded in a supersonic jet, and characterized by Fourier transform microwave spectroscopy. In the isolation conditions of the jet there have been discovered up to seven different neutral (non-zwitterionic) structures of serine, which are conclusively identified by the comparison between the experimental values of the rotational and quadrupole coupling constants with those predicted by ab initio calculations. These seven forms can serve as a basis to represent the shape of serine in the gas phase. From the postexpansion abundances we derived the conformational stability trend, which is controlled by the subtle network of intramolecular hydrogen bonds formed between the polar groups in the amino acid backbone and the hydroxy side chain. It is proposed that conformational cooling perturbs the equilibrium conformational distribution; thus, some of the lower-energy forms are "missing" in the supersonic expansion.
机译:我们探索了气相中蛋白质氨基酸丝氨酸[CH_2OH-CH(NH_2)-COOH]的构象图。固体丝氨酸通过激光烧蚀蒸发,在超音速射流中膨胀,并通过傅里叶变换微波光谱法进行表征。在射流的隔离条件下,已发现多达七个不同的丝氨酸中性(非两性离子)结构,这些结果通过旋转和四极偶合常数实验值与从头算的预测值之间的比较最终确定。这七种形式可以作为代表气相中丝氨酸形状的基础。从膨胀后的丰度,我们得出构象稳定性趋势,这是由氨基酸主链上的极性基团和羟基侧链之间形成的分子内氢键的微妙网络控制的。建议构象冷却扰动平衡构象分布。因此,某些低能形式在超声速膨胀中“缺失”。

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