利用亲和选择-质谱法从天然产物中发现药物

Q1 Pharmacology, Toxicology and Pharmaceutics
Ruth N. Muchiri , Richard B. van Breemen
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引用次数: 7

摘要

作为药物发现的起点,亲和选择-质谱(As - ms)是发现化学来源不同的先导化合物的理想方法,如植物、真菌和微生物提取物。基于大分子受体和低分子质量配体之间的结合相互作用,AS-MS能够从复杂混合物中快速分离出具有药理活性的小分子,用于质谱表征和鉴定。与传统的高通量筛选不同,AS-MS不需要放射性标记,不需要紫外线或荧光发色团,并且与所有类型的受体、酶、孵育缓冲液、辅助因子和配体兼容。最成功的AS-MS类型包括脉冲超滤(PUF) AS-MS,尺寸排除色谱(SEC) AS-MS和磁微珠亲和选择筛选(MagMASS),它们从混合物中分离配体-受体复合物和非结合化合物的方法不同。亲和分离后,用高分辨率UHPLC-MS和串联质谱对混合物中的配体进行表征。根据这些元素组成和结构数据,通过在线检索已知天然产物数据库并与标准进行比较来确定先导化合物的身份。新型天然产物的结构是利用包括二维核磁共振和质谱在内的光谱技术的组合来确定的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drug discovery from natural products using affinity selection-mass spectrometry

As a starting point for drug discovery, affinity selection-mass spectrometry (AS-MS) is ideal for the discovery of lead compounds from chemically diverse sources such as botanical, fungal and microbial extracts. Based on binding interactions between macromolecular receptors and ligands of low molecular mass, AS-MS enables the rapid isolation of pharmacologically active small molecules from complex mixtures for mass spectrometric characterization and identification. Unlike conventional high-throughput screening, AS-MS requires no radiolabels, no UV or fluorescent chromophores, and is compatible with all classes of receptors, enzymes, incubation buffers, cofactors, and ligands. The most successful types of AS-MS include pulsed ultrafiltration (PUF) AS-MS, size exclusion chromatography (SEC) AS-MS, and magnetic microbead affinity selection screening (MagMASS), which differ in their approaches for separating the ligand-receptor complexes from the non-binding compounds in mixtures. After affinity isolation, the ligand(s) from the mixture are characterized using high resolution UHPLC-MS and tandem mass spectrometry. Based on these elemental composition and structural data, the identities of the lead compounds are determined by searching on-line databases for known natural products and by comparison with standards. The structures of novel natural products are determined using a combination of spectroscopic techniques including two-dimensional NMR and MS.

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来源期刊
Drug Discovery Today: Technologies
Drug Discovery Today: Technologies Pharmacology, Toxicology and Pharmaceutics-Drug Discovery
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期刊介绍: Discovery Today: Technologies compares different technological tools and techniques used from the discovery of new drug targets through to the launch of new medicines.
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