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基于分子中分子片段法计算大分子的手性光谱:丙氨酸多肽的振动圆二色性和拉曼光学活性光谱

Molecules-in-molecules fragment-based method for the calculation of chiroptical spectra of large molecules: Vibrational circular dichroism and Raman optical activity spectra of alanine polypeptides.

作者信息

Jose K V Jovan, Raghavachari Krishnan

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana, USA.

出版信息

Chirality. 2016 Dec;28(12):755-768. doi: 10.1002/chir.22651.

Abstract

The molecules-in-molecules (MIM) fragment-based method has recently been adapted to evaluate the chiroptical (vibrational circular dichroism [VCD] and Raman optical activity [ROA]) spectra of large molecules such as peptides. In the MIM-VCD and MIM-ROA methods, the relevant higher energy derivatives of the parent molecule are assembled from the corresponding derivatives of smaller fragment subsystems. In addition, the missing long-range interfragment interactions are accounted at a computationally less expensive level of theory (MIM2). In this work we employed the MIM-VCD and MIM-ROA fragment-based methods to explore the evolution of the chiroptical spectroscopic characteristics of 3 -helix, α-helix, β-hairpin, γ-turn, and β-extended conformers of gas phase polyalanine (chain length n = 6-14). The different conformers of polyalanine show distinctive features in the MIM chiroptical spectra and the associated spectral intensities increase with evolution of system size. For a better understanding the site-specific effects on the vibrational spectra, isotopic substitutions were also performed employing the MIM method. An increasing redshift with the number of isotopically labeled C=O functional groups in the peptide molecule was seen. For larger polypeptides, we implemented the two-step-MIM model to circumvent the high computational expense associated with the evaluation of chiroptical spectra at a high level of theory using large basis sets. The chiroptical spectra of α-(alanine) polypeptide obtained using the two-step-MIM model, including continuum solvation effects, show good agreement with the full calculations and experiment. This benchmark study suggests that the MIM-fragment approach can assist in predicting and interpreting chiroptical spectra of large polypeptides.

摘要

分子内分子(MIM)片段法最近已被用于评估大分子(如肽)的手性光谱(振动圆二色性[VCD]和拉曼光学活性[ROA])。在MIM-VCD和MIM-ROA方法中,母体分子的相关高能衍生物由较小片段子系统的相应衍生物组装而成。此外,缺失的远程片段间相互作用在计算成本较低的理论水平(MIM2)上进行考虑。在这项工作中,我们采用基于MIM-VCD和MIM-ROA片段的方法来探索气相聚丙氨酸(链长n = 6-14)的3-螺旋、α-螺旋、β-发夹、γ-转角和β-伸展构象的手性光谱特征的演变。聚丙氨酸的不同构象在MIM手性光谱中表现出独特的特征,并且相关的光谱强度随着系统尺寸的增加而增加。为了更好地理解振动光谱的位点特异性效应,还采用MIM方法进行了同位素取代。观察到肽分子中同位素标记的C=O官能团数量增加时红移增加。对于较大的多肽,我们实施了两步MIM模型,以规避在使用大基组的高理论水平下评估手性光谱所涉及的高计算成本。使用两步MIM模型获得的α-(丙氨酸)多肽的手性光谱,包括连续溶剂化效应,与全计算和实验结果显示出良好的一致性。这项基准研究表明,MIM片段方法可以帮助预测和解释大型多肽的手性光谱。

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