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[转运体选择性抑制剂的高通量筛选技术及其在药物发现中的应用]

[High-throughput Screening Technology for Selective Inhibitors of Transporters and Its Application in Drug Discovery].

作者信息

Motoyaji Takashi

机构信息

SEEDSUPPLY INC.

出版信息

Yakugaku Zasshi. 2021;141(4):511-515. doi: 10.1248/yakushi.20-00204-3.

DOI:10.1248/yakushi.20-00204-3
PMID:33790118
Abstract

The first step in small-molecule drug discovery is the identification of hit compounds via high-throughput screening (HTS). In transporter drug discovery, most HTS assays are based on the uptake of labeled substrates, but such functional assays cannot be developed for many transporters, such as intracellular organelle transporters. These transporters remain unexplored in drug discovery despite their promise as drug targets. Affinity selection-mass spectrometry (AS-MS) is a label-free binding assay technology that has been developed as an HTS technology for analyzing interactions between targets and compounds. The use of AS-MS technology enables HTS against every type of drug target, in contrast to functional assays. AS-MS technology is usually used for soluble proteins, but we have developed this technology for application to membrane proteins as well. So far, we have used AS-MS for HTS of approximately 400000 compounds. In this review, the principles and application of AS-MS technology are introduced and an HTS campaign for solute carrier type 17A8 (SLC17A8) (vesicular glutamate transporter 3) is presented as an example.

摘要

小分子药物发现的第一步是通过高通量筛选(HTS)识别活性化合物。在转运体药物发现中,大多数高通量筛选分析是基于标记底物的摄取,但对于许多转运体,如细胞内细胞器转运体,无法开发此类功能分析。尽管这些转运体有望成为药物靶点,但在药物发现中仍未得到探索。亲和选择质谱(AS-MS)是一种无标记结合分析技术,已被开发为一种用于分析靶点与化合物之间相互作用的高通量筛选技术。与功能分析相比,AS-MS技术的使用能够针对每种类型的药物靶点进行高通量筛选。AS-MS技术通常用于可溶性蛋白质,但我们也已将该技术开发用于膜蛋白。到目前为止,我们已使用AS-MS对约400000种化合物进行高通量筛选。在本综述中,介绍了AS-MS技术的原理和应用,并以溶质载体家族17成员8(SLC17A8)(囊泡谷氨酸转运体3)的高通量筛选活动为例进行了阐述。

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