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和频产生与固态 NMR 研究聚苯乙烯吸附肽的结构、取向和动力学。

Sum frequency generation and solid-state NMR study of the structure, orientation, and dynamics of polystyrene-adsorbed peptides.

机构信息

Department of Bioengineering and National ESCA and Surface Analysis Center for Biomedical Problems, University of Washington, Seattle, WA 98195, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Jul 27;107(30):13288-93. doi: 10.1073/pnas.1003832107. Epub 2010 Jul 13.

Abstract

The power of combining sum frequency generation (SFG) vibrational spectroscopy and solid-state nuclear magnetic resonance (ssNMR) spectroscopy to quantify, with site specificity and atomic resolution, the orientation and dynamics of side chains in synthetic model peptides adsorbed onto polystyrene (PS) surfaces is demonstrated in this study. Although isotopic labeling has long been used in ssNMR studies to site-specifically probe the structure and dynamics of biomolecules, the potential of SFG to probe side chain orientation in isotopically labeled surface-adsorbed peptides and proteins remains largely unexplored. The 14 amino acid leucine-lysine peptide studied in this work is known to form an alpha-helical secondary structure at liquid-solid interfaces. Selective, individual deuteration of the isopropyl group in each leucine residue was used to probe the orientation and dynamics of each individual leucine side chain of LKalpha14 adsorbed onto PS. The selective isotopic labeling methods allowed SFG analysis to determine the orientations of individual side chains in adsorbed peptides. Side chain dynamics were obtained by fitting the deuterium ssNMR line shape to specific motional models. Through the combined use of SFG and ssNMR, the dynamic trends observed for individual side chains by ssNMR have been correlated with side chain orientation relative to the PS surface as determined by SFG. This combination provides a more complete and quantitative picture of the structure, orientation, and dynamics of these surface-adsorbed peptides than could be obtained if either technique were used separately.

摘要

本研究展示了将和频产生(SFG)振动光谱与固态核磁共振(ssNMR)光谱相结合,以特异性和原子分辨率量化吸附在聚苯乙烯(PS)表面的合成模型肽中侧链的取向和动力学的能力。虽然同位素标记在 ssNMR 研究中早已被用于特异性探测生物分子的结构和动力学,但 SFG 探测同位素标记表面吸附肽和蛋白质中侧链取向的潜力在很大程度上仍未得到探索。本工作研究的 14 个氨基酸亮氨酸-赖氨酸肽在液-固界面形成α-螺旋二级结构。每个亮氨酸残基的异丙基基团的选择性、单独氘化被用于探测吸附在 PS 上的 LKalpha14 中每个亮氨酸侧链的取向和动力学。选择性同位素标记方法允许 SFG 分析确定吸附肽中各个侧链的取向。通过将氘 ssNMR 线形状拟合到特定的运动模型来获得侧链动力学。通过 SFG 和 ssNMR 的结合使用,ssNMR 观察到的各个侧链的动态趋势与 SFG 确定的相对于 PS 表面的侧链取向相关联。与单独使用任何一种技术相比,这种组合提供了这些表面吸附肽的结构、取向和动力学的更完整和定量的图像。

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