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四丙氨酸在聚(L-脯氨酸)II 型肽构象中的喇曼光学活性。

Raman optical activity of tetra-alanine in the poly(l-proline) II type peptide conformation.

机构信息

Department of Chemistry and Applied Chemistry, Graduate School of Science and Engineering, Saga University, Saga 840-8502, Japan.

Institute of Multidisciplinary Research for Advanced Materials, Tohoku University, Sendai 980-8577, Japan.

出版信息

Phys Chem Chem Phys. 2017 Jan 18;19(3):2078-2086. doi: 10.1039/c6cp07828a.

Abstract

The poly(l-proline) II (PPII) helix is considered to be a major conformation in disordered polypeptides and unfolded proteins in aqueous solution. The PPII conformation can be identified by using Raman optical activity (ROA), which measures the different intensities of right- and left-circularly polarized Raman scattered light from chiral molecules and provides information on stereochemistry associated with vibrational motions. In the present study, we used tetra-alanine (Ala) as a model system, since its central amide bond adopts the PPII conformation. The predominance of the PPII conformation was supported by 11 ns molecular dynamics (MD) simulations at 300 K. The MD snapshots were used for subsequent quantum mechanical/molecular mechanical (QM/MM) calculations to compute the Raman and ROA spectra. The present MD + QM/MM analysis leads to a good agreement between the observed and simulated spectra, allowing us to assign most of the spectral features including the ROA band near 1320 cm, which has been used as a marker for the PPII conformation. This positive ROA band has three components. The lower frequency component near 1310 cm arises from an internal peptide bond, whereas the higher frequency components around 1320-1335 cm appear due to N- and C-terminal peptide groups. The MD + QM/MM calculations also reproduced the electronic circular dichroism spectra of Ala. The present results provide a satisfactory framework for future investigations of unfolded/disordered proteins as well as peptides in solutions by chiral spectroscopic methods.

摘要

聚 L-脯氨酸 II(PPII)螺旋被认为是无序多肽和水溶液中未折叠蛋白质的主要构象。可以使用拉曼光学活性(ROA)来识别 PPII 构象,ROA 通过测量手性分子右旋和左旋圆偏振拉曼散射光的不同强度,提供与振动运动相关的立体化学信息。在本研究中,我们使用四丙氨酸(Ala)作为模型系统,因为其中心酰胺键采用 PPII 构象。300 K 下进行的 11 ns 分子动力学(MD)模拟支持了 PPII 构象的优势。MD 快照随后用于进行量子力学/分子力学(QM/MM)计算,以计算拉曼和 ROA 光谱。本 MD+QM/MM 分析得出了实验和模拟光谱之间的良好一致性,使我们能够对大多数光谱特征进行分配,包括 ROA 带附近的 1320 cm,它被用作 PPII 构象的标记。该正 ROA 带具有三个分量。1310 cm 附近的低频分量来自内部肽键,而 1320-1335 cm 附近的较高频率分量归因于 N-和 C-末端肽基团。MD+QM/MM 计算还复制了 Ala 的电子圆二色性光谱。本结果为未来通过手性光谱方法研究溶液中未折叠/无序蛋白质以及肽提供了令人满意的框架。

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