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Organic Synthesis Toward Small-Molecule Probes and Drugs Special Feature: Diversity-oriented synthesis of macrocyclic peptidomimetics

机译:小分子探针和药物的有机合成特殊功能:大环肽模拟物的多样性导向合成。

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摘要

Structurally diverse libraries of novel small molecules represent important sources of biologically active agents. In this paper we report the development of a diversity-oriented synthesis strategy for the generation of diverse small molecules based around a common macrocyclic peptidomimetic framework, containing structural motifs present in many naturally occurring bioactive compounds. Macrocyclic peptidomimetics are largely underrepresented in current small-molecule screening collections owing primarily to synthetic intractability; thus novel molecules based around these structures represent targets of significant interest, both from a biological and a synthetic perspective. In a proof-of-concept study, the synthesis of a library of 14 such compounds was achieved. Analysis of chemical space coverage confirmed that the compound structures indeed occupy underrepresented areas of chemistry in screening collections. Crucial to the success of this approach was the development of novel methodologies for the macrocyclic ring closure of chiral α-azido acids and for the synthesis of diketopiperazines using solid-supported N methylmorpholine. Owing to their robust and flexible natures, it is envisaged that both new methodologies will prove to be valuable in a wider synthetic context.
机译:新型小分子的结构多样的文库代表了生物活性剂的重要来源。在本文中,我们报告了一种基于多样性的合成策略的发展,该策略用于基于常见的大环拟肽构架生成多样化的小分子,该构架包含许多天然存在的生物活性化合物中存在的结构基序。大环肽模拟物在当前的小分子筛查产品中的代表性不足,主要原因是合成难处理。因此,从生物学和合成的角度看,基于这些结构的新型分子代表着重要的靶标。在概念验证研究中,合成了14种此类化合物的文库。化学空间覆盖率的分析证实,化合物的结构确实占据了筛选收集品中化学物质代表性不足的区域。该方法成功的关键是开发用于手性α-叠氮酸大环闭环和使用固相支持的N-甲基吗啉合成二酮哌嗪的新方法。由于它们的鲁棒性和灵活性,可以设想这两种新方法在更广泛的综合背景下将是有价值的。

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