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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Local NH-pi interactions involving aromatic residues of proteins: influence of backbone conformation and pi pi* excitation on the pi H-bond strength, as revealed from studies of isolated model peptides
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Local NH-pi interactions involving aromatic residues of proteins: influence of backbone conformation and pi pi* excitation on the pi H-bond strength, as revealed from studies of isolated model peptides

机译:局部NH-pi相互作用涉及蛋白质的芳香族残基:骨架模型和pi pi *激发对pi H键强度的影响,从分离的模型肽的研究中可以看出

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摘要

Conformer-selective IR gas phase spectroscopy and high level quantum chemistry methods have been used to characterise the diversity of local NH-pi interactions between the pi ring of a phenylalanine aromatic residue and the nearby main chain amide groups. The study of model systems shows how the amide NH stretch vibrational features, in the 3410-3460 cm(-1) frequency range, can be used to monitor the strength of these local pi H-bonds, which is found to depend on both the backbone conformation and the aromatic side chain orientation. This is rationalized in terms of partial electron transfer between the pi cloud and the main chain NH bonds, with the help of analysis tools based on Natural Bonding Orbitals and Non-Covalent Interactions plots. The experimental study, extended to the NH-pi interactions when the Phe residue is excited in its first pi pi* electronic state, also demonstrates the principle of the pi pi* labelling technique, i.e. a selective labelling of those NH bonds in a peptide molecule that are in close contact with an aromatic ring, as an elegant tool for IR spectroscopic assignments. The validation of theoretical predictions against experimental data (frequency change upon excitation) eventually qualifies the use of the CC2 method for the description of the pi pi* excited states of systems having a phenyl ring, both in terms of structure, vibrational modes and nature of excited states.
机译:已经使用了共形选择性红外气相色谱法和高级量子化学方法来表征苯丙氨酸芳族残基的pi环与附近主链酰胺基团之间的局部NH-pi相互作用的多样性。对模型系统的研究表明,在3410-3460 cm(-1)频率范围内,酰胺NH拉伸振动特征如何用于监测这些局部pi H键的强度,这取决于两者之间的关系。骨架构象和芳族侧链的取向。在基于自然键合轨道和非共价相互作用图的分析工具的帮助下,根据pi云与主链NH键之间的部分电子转移,这是合理的。实验研究扩展到了在第一个pi pi *电子状态下激发Phe残基时的NH-pi相互作用,还证明了pi pi *标记技术的原理,即在肽分子中选择性标记那些NH键与芳香环紧密接触的化合物,是进行红外光谱分配的理想工具。相对于实验数据(激发时的频率变化)的理论预测的验证最终使CC2方法可用于描述具有苯环的系统的pi pi *激发态,无论是结构,振动模式还是性质。兴奋的状态。

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