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利用同位素标记肽的振动圆二色性传感位点特异性结构特征和手性

Sensing site-specific structural characteristics and chirality using vibrational circular dichroism of isotope labeled peptides.

作者信息

Keiderling Timothy A

机构信息

Department of Chemistry, University of Illinois at Chicago, Chicago, Illinois, USA.

出版信息

Chirality. 2017 Dec;29(12):763-773. doi: 10.1002/chir.22749. Epub 2017 Oct 4.

Abstract

Isotope labeling has a long history in chemistry as a tool for probing structure, offering enhanced sensitivity, or enabling site selection with a wide range of spectroscopic tools. Chirality sensitive methods such as electronic circular dichroism are global structural tools and have intrinsically low resolution. Consequently, they are generally insensitive to modifications to enhance site selectivity. The use of isotope labeling to modify vibrational spectra with unique resolvable frequency shifts can provide useful site-specific sensitivity, and these methods have been recently more widely expanded in biopolymer studies. While the spectral shifts resulting from changes in isotopic mass can provide resolution of modes from specific parts of the molecule and can allow detection of local change in structure with perturbation, these shifts alone do not directly indicate structure or chirality. With vibrational circular dichroism (VCD), the shifted bands and their resultant sign patterns can be used to indicate local conformations in labeled biopolymers, particularly if multiple labels are used and if their coupling is theoretically modeled. This mini-review discusses selected examples of the use of labeling specific amides in peptides to develop local structural insight with VCD spectra.

摘要

同位素标记在化学领域作为一种探测结构、提高灵敏度或利用多种光谱工具进行位点选择的工具已有很长历史。诸如电子圆二色性等手性敏感方法是全局结构工具,分辨率本质上较低。因此,它们通常对增强位点选择性的修饰不敏感。利用同位素标记通过独特的可分辨频移来改变振动光谱,可以提供有用的位点特异性灵敏度,并且这些方法最近在生物聚合物研究中得到了更广泛的应用。虽然同位素质量变化引起的光谱位移可以分辨分子特定部分的模式,并能够通过微扰检测结构的局部变化,但这些位移本身并不能直接表明结构或手性。对于振动圆二色性(VCD),位移谱带及其产生的符号模式可用于指示标记生物聚合物中的局部构象,特别是如果使用多个标记并且对它们的耦合进行理论建模的话。本综述讨论了在肽中标记特定酰胺以通过VCD光谱深入了解局部结构的选定示例。

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