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Recent applications of isotopic labeling for protein NMR in drug discovery

机译:同位素标记用于蛋白质NMR在药物开发中的最新应用

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摘要

Introduction: Nuclear magnetic resonance (NMR) applications in drug discovery are classified into two categories: ligand-based methods and protein-based methods. The latter is based on the observation of the 1H-15N HSQC spectra of a protein with and without lead compounds. However, in order to take this strategy, isotopic labeling is an absolute necessity. Given that each 1H-15N HSQC signal corresponds to a residue of the target protein, signal changes provide specific information on whether a compound will fit into a pocket. Thus, this protein-based method is particularly suitable for fragment-based approaches, such as "SAR-by-NMR" and "fragment-growing." Alternatively, the information from a protein interface may be used to develop inhibitors for protein-protein interactions. Areas covered: This review discusses at the experimental procedures for preparing isotopically labeled protein and introduces selected topics on atom-specific and residue-selective isotope labeling, which may facilitate the development of PPI/PA inhibitors. Furthermore, the author reviews the recent applications of "in-cell" NMR spectroscopy, which is now considered as an important tool in drug delivery research. Expert opinion: Many recent advances in labeling methods have succeeded in expanding NMR's potential for drug discovery. In addition to those methods, another new technique called "in-cell NMR" allows the observation of protein-ligand interactions inside living cells. In other words, "in-cell NMR" may become a pharmaceutical NMR technique for drug delivery.
机译:简介:核磁共振(NMR)在药物发现中的应用分为两类:基于配体的方法和基于蛋白质的方法。后者基于观察到有或没有先导化合物的蛋白质的1H-15N HSQC光谱。但是,为了采取这种策略,同位素标记是绝对必要的。假定每个1H-15N HSQC信号对应于目标蛋白的残基,信号变化将提供有关化合物是否适合放入口袋的特定信息。因此,这种基于蛋白质的方法特别适用于基于片段的方法,例如“ SAR-by-NMR”和“片段生长”。或者,来自蛋白质界面的信息可用于开发蛋白质与蛋白质相互作用的抑制剂。涵盖的领域:这篇综述讨论了制备同位素标记的蛋白质的实验程序,并介绍了有关原子特异性和残基选择性同位素标记的选定主题,这可能有助于PPI / PA抑制剂的开发。此外,作者回顾了“细胞内” NMR光谱技术的最新应用,该技术现已被视为药物输送研究中的重要工具。专家意见:标记方法的许多最新进展已成功地扩大了NMR在药物发现中的潜力。除这些方法外,另一种称为“细胞内NMR”的新技术允许观察活细胞内部的蛋白质-配体相互作用。换句话说,“细胞内NMR”可以成为用于药物递送的药物NMR技术。

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