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使用质谱和离子淌度-质谱技术对生物分子进行手性和结构分析。

Chiral and structural analysis of biomolecules using mass spectrometry and ion mobility-mass spectrometry.

机构信息

Department of Chemistry, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

Chirality. 2009;21 Suppl 1:E253-64. doi: 10.1002/chir.20806.

Abstract

This report describes the strategies for gas-phase chiral and structural characterization of biomolecules using mass spectrometry (MS) and ion mobility-MS (IM-MS) techniques. Because both MS and IM-MS do not directly provide chiral selectivity, methodologies for adding a chiral selector are discussed in the context of (i) host-guest (H-G) associations, (ii) diastereomeric collision-induced dissociation (CID) methods, (iii) ion-molecule reactions, and (iv) the kinetic method. MS techniques for the analysis of proteins and protein complexes are briefly described. New advances in performing rapid 2D gas-phase separations on the basis of IM-MS are reviewed with a particular emphasis on the different forms of IM instrumentation and how they are used for chiral and/or structural biomolecular studies. This report is not intended to be a comprehensive review of the field, but rather to underscore the contemporary techniques that are commonly or increasingly being used to complement measurements performed by chiroptical methodologies.

摘要

本报告描述了使用质谱 (MS) 和离子淌度-MS (IM-MS) 技术对生物分子进行气相手性和结构表征的策略。由于 MS 和 IM-MS 都不能直接提供手性选择性,因此本文讨论了在以下方面添加手性选择剂的方法:(i) 主客体 (H-G) 缔合,(ii) 非对映选择性碰撞诱导解离 (CID) 方法,(iii) 离子-分子反应,和 (iv) 动力学方法。简要描述了用于分析蛋白质和蛋白质复合物的 MS 技术。本文重点介绍了基于 IM-MS 的快速二维气相分离的新进展,特别强调了不同形式的 IM 仪器以及它们如何用于手性和/或结构生物分子研究。本报告并非该领域的全面综述,而是强调了当前常用于补充手性方法学测量的常见或越来越多使用的技术。

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