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From peptides to small molecules: an intriguing but intricated way to new drugs.

机译:从肽到小分子:开发新药的一种有趣而复杂的方式。

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A variety of peptides active in biological pathways have been identified e.g. receptor antagonists or inhibitors of protein-protein interactions and several peptide or peptide-derived compounds are on the drug market or in clinical trials. Through the rational design or the combinatorial preparation and High-throughput screening of arrays of compounds, peptides play a pivotal role for the rapid identification of ligands, but, despite these favorable properties, they often present poorer bioavailability and lower metabolic stability respect to traditional drugs. The process of conversion of a peptide in a small molecule provides the reduction of the peptide to the minimum active sequence (MAS) testing truncated peptides from the C- and N- termini alternatively. Then the influence of individual amino acid on the biological activity is determined by systematically replacing each residue in the peptide with specific amino acids. After structure-activity relationship (SAR) of each amino acid in the sequence has been assessed, the bioactive conformational flexibility is reduced by introducing constraints at various positions. These features are used for the design of a pharmacophore model in which functional groups crucial for activity are pre-positioned. Here we propose a panoramic review of the common principles for the conversion of peptides into small organic molecules and the most interesting findings in peptide-based leads of the last decades.
机译:已经鉴定了在生物途径中有活性的多种肽,例如。受体拮抗剂或蛋白-蛋白相互作用的抑制剂以及几种肽或肽衍生的化合物已在药物市场上或在临床试验中。通过合理的设计或组合制备以及对化合物阵列的高通量筛选,肽在快速鉴定配体中起着关键作用,但是尽管具有这些良好的特性,但与传统药物相比,它们通常具有较差的生物利用度和较低的代谢稳定性。肽在小分子中的转化过程提供了将肽还原成最小活性序列(MAS)的方法,可检测来自C端和N端的截短肽。然后通过用特定氨基酸系统取代肽中的每个残基来确定单个氨基酸对生物活性的影响。在评估了序列中每个氨基酸的构效关系(SAR)后,通过在各个位置引入限制条件,降低了生物活性构象的柔性。这些功能用于设计药效团模型,其中预先确定了对活性至关重要的官能团。在这里,我们提出了将肽转换为有机小分子的通用原理的全景综述,以及最近几十年来基于肽的引线中最有趣的发现。

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