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Small and colorful stones make beautiful mosaics: Fragment-based chemogenomics

机译:小巧多彩的石头组成美丽的马赛克:基于片段的化学基因组学

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摘要

Smaller stones with a wide variety of colors make a higher resolution mosaic. In much the same way, smaller chemical entities that are structurally diverse are better able to interrogate protein binding sites. This feature article describes the construction of a diverse fragment library and an analysis of the screening of six representative protein targets belonging to three diverse target classes (G protein-coupled receptors ADRB2, H1R, H3R, and H4R, the ligand-gated ion channel 5-HT 3R, and the kinase PKA) using chemogenomics approaches. The integration of experimentally determined bioaffinity profiles across related and unrelated protein targets and chemogenomics analysis of fragment binding and protein structure allow the identification of: (i) unexpected similarities and differences in ligand binding properties, and (ii) subtle ligand affinity and selectivity cliffs. With a wealth of fragment screening data being generated in industry and academia, such approaches will contribute to a more detailed structural understanding of ligand-protein interactions.
机译:具有各种颜色的较小的石头可以形成更高分辨率的马赛克。以几乎相同的方式,结构上不同的较小化学实体能够更好地询问蛋白质结合位点。这篇专题文章描述了一个多样化片段文库的构建以及对属于三个不同靶标类别(G蛋白偶联受体ADRB2,H1R,H3R和H4R,配体门控离子通道5)的六个代表性蛋白质靶标的筛选分析-HT 3R和激酶PKA)使用化学基因组学方法。跨相关和不相关蛋白质靶标的实验确定的生物亲和谱的整合以及片段结合和蛋白质结构的化学基因组学分析可鉴定:(i)配体结合特性的意外相似性和差异,以及(ii)细微的配体亲和力和选择性悬崖。随着工业和学术界产生大量的片段筛选数据,这些方法将有助于对配体-蛋白质相互作用的更详细的结构理解。

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