[用于药物发现和药理学研究的结合化合物和蛋白质快速筛选]。

Naoki Tarui
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引用次数: 0

摘要

在药物发现和药理学研究中,尽早确定具有药理作用的化合物的目标分子至关重要。然而,这一过程往往需要耗费大量精力,而且会限制研究速度,从而延缓研究进展。本文介绍了一种快速筛选结合化合物或蛋白质的简化方法。该技术利用亲和选择质谱法(ASMS),通过尺寸排阻色谱法和质谱法有效检测化合物与目标物的结合。ASMS 具有高灵敏度和特异性,是准确鉴定结合相互作用的理想选择。我们进一步增强了 ASMS 的功能,创建了粘合剂筛选技术 (BST),以处理无需溶解的膜蛋白。BST 可以筛选可溶性膜蛋白和具有挑战性的膜蛋白,如 GPCR 和 SLC 转运体。通过使用目标分子表达量高的细胞膜分馏物或细胞器分馏物,BST 能有效地识别潜在的结合化合物。这种创新方法构建了一个针对各种靶点的结合化合物综合数据库,有助于快速进行假设检验和药理评估。此外,BST 还利用无小麦胚芽细胞和动物细胞表达系统筛选了 17,000 种蛋白质,包括膜蛋白。这种方法无需标记化合物或固定蛋白质,可保留蛋白质的原生状态,从而探索蛋白质之间的结合相互作用。在动物或细胞试验中,BST 对于确定具有已知药理作用但未知靶点的化合物的靶点非常有效。利用 BST,研究人员可以克服早期药物发现的瓶颈,大大提高研究速度和成功率。这种方法是一项重大进步,它为药物发现过程中识别和验证靶标分子提供了一种高效、有效的方法。
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[The quick screening of binding compounds and proteins for drug discovery and pharmacological research].

In drug discovery and pharmacological research, early identification of target molecules for compounds with pharmacological effects is crucial. However, this process often requires significant effort and can be rate-limiting, thereby slowing down research progress. This paper introduces a simplified and rapid method for quick screening of binding compounds or proteins. Utilizing Affinity Selection Mass Spectrometry (ASMS), this technique efficiently detects compound-target binding through size-exclusion chromatography and mass spectrometry. ASMS offers high sensitivity and specificity, making it ideal for accurate identification of binding interactions. We have further enhanced ASMS to handle membrane proteins without solubilization, creating Binder Selection Technology (BST). BST allows screening against both soluble and challenging membrane proteins such as GPCRs and SLC transporters. By using cell membrane fractions or organelle fractions with high target molecule expression, BST efficiently identifies potential binding compounds. This innovative method constructs a comprehensive database of binding compounds for various targets, facilitating rapid hypothesis testing and pharmacological evaluation. Additionally, BST screens 17,000 proteins, including membrane proteins, using wheat germ cell-free and animal cell expression systems. This approach allows exploration of binding interactions without labeling compounds or immobilizing proteins, preserving their native state. BST is powerful for identifying targets of compounds with known pharmacological effects but unknown targets in animal or cell-based assays. By utilizing BST, researchers can overcome bottlenecks in early drug discovery, significantly enhancing research speed and success rates. This method represents a major advancement, providing an efficient and effective way to identify and validate target molecules in drug discovery.

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来源期刊
Folia Pharmacologica Japonica
Folia Pharmacologica Japonica Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
0.40
自引率
0.00%
发文量
132
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