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Peptide-to-Small Molecule: A Pharmacophore-Guided Small Molecule Lead Generation Strategy from High-Affinity Macrocyclic Peptides

机译:多肽-小分子:一种药效团指导的高亲和力大环肽小分子先导化合物生成策略

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摘要

Recent technological innovations have led to the development of methods for the rapid identification of high-affinity macrocyclic peptides for a wide range of targets; however, it is still challenging to achieve the desired activity and membrane permeability at the same time. Here, we propose a novel small molecule lead discovery strategy, ″Peptide-to-Small Molecule″, which is a combination of rapid identification of high-affinity macrocyclic peptides via peptide display screening followed by pharmacophore-guided de novo design of small molecules, and demonstrate the applicability using nicotinamide N-methyltransferase (NNMT) as a target. Affinity selection by peptide display technology identified macrocyclic peptide 1 that exhibited good enzymatic inhibitory activity but no cell-based activity. Thereafter, a peptide pharmacophore-guided de novo design and further structure-based optimization resulted in highly potent and cell-active small molecule 14 (cell-free IC50 = 0.0011 μM, cell-based IC50 = 0.40 μM), indicating that this strategy could be a new option for drug discovery.
机译:最近的技术创新导致了快速鉴定用于多种靶标的高亲和力大环肽的方法;然而,要同时达到所需的活性和膜通透性仍然具有挑战性。在这里,我们提出了一种新的小分子先导化合物发现策略,“肽到小分子”,它结合了通过肽展示筛选快速鉴定高亲和力大环肽,然后药效团指导的小分子从头设计,并使用烟酰胺N-甲基转移酶(NNMT)作为靶标证明了其适用性。通过肽展示技术进行亲和筛选,鉴定出大环肽1具有良好的酶抑制活性,但没有细胞活性。此后,肽药效团指导的从头设计和进一步的基于结构的优化产生了高效和细胞活性的小分子 14(无细胞 IC50 = 0.0011 μM,基于细胞的 IC50 = 0.40 μM),表明该策略可能是药物发现的新选择。

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