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Data-Driven Analysis of Fluorination of Ligands of Aminergic G Protein Coupled Receptors

机译:胺能G蛋白偶联受体配体氟化的数据驱动分析

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Currently, G protein-coupled receptors are the targets with the highest number of drugs in many therapeutic areas. Fluorination has become a common strategy in designing highly active biological compounds, as evidenced by the steadily increasing number of newly approved fluorine-containing drugs. Herein, we identified in the ChEMBL database and analysed 1554 target-based FSAR sets (non-fluorinated compounds and their fluorinated analogues) comprising 966 unique non-fluorinated and 2457 unique fluorinated compounds active against 33 different aminergic GPCRs. Although a relatively small number of activity cliffs (defined as a pair of structurally similar compounds showing significant differences of activity -Delta pPot > 1.7) was found in FSAR sets, it is clear that appropriately introduced fluorine can increase ligand potency more than 50-fold. The analysis of matched molecular pairs (MMPs) networks indicated that the fluorination of the aromatic ring showed no clear trend towards a positive or negative effect on affinity; however, a favourable site for a positive potency effect of fluorination was the ortho position. Fluorination of aliphatic fragments more often led to a decrease in biological activity. The results may constitute the rules of thumb for fluorination of aminergic receptor ligands and provide insights into the role of fluorine substitutions in medicinal chemistry.
机译:目前,G蛋白偶联受体是许多治疗领域中药物数量最多的靶点。氟化已成为设计高活性生物化合物的常用策略,新批准的含氟药物数量稳步增加就证明了这一点。在此,我们在 ChEMBL 数据库中鉴定并分析了 1554 个基于靶标的 FSAR 集(非氟化化合物及其氟化类似物),其中包括 966 种独特的非氟化化合物和 2457 种独特的氟化化合物,它们对 33 种不同的胺能 GPCR 具有活性。尽管在FSAR组中发现了相对较少的活性悬崖(定义为一对结构相似的化合物,显示出显着的活性差异-Delta pPot > 1.7),但很明显,适当引入的氟可以将配体效力提高50倍以上。对匹配分子对(MMPs)网络的分析表明,芳环的氟化对亲和力没有明显的正负影响趋势;然而,氟化产生积极效力效应的有利部位是邻位位。脂肪族片段的氟化更常导致生物活性降低。这些结果可能构成胺能受体配体氟化的经验法则,并为氟取代在药物化学中的作用提供见解。

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