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Double the Chemistry, Double the Fun: Structural Diversity and Biological Activity of Marine-Derived Diketopiperazine Dimers

机译:化学双倍的化学,双倍的乐趣:海洋衍生的Diketopiperazine二聚体的结构多样性和生物活性

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摘要

While several marine natural products bearing the 2,5-diketopiperazine ring have been reported to date, the unique chemistry of dimeric frameworks appears to remain neglected. Frequently reported from marine-derived strains of fungi, many naturally occurring diketopiperazine dimers have been shown to display a wide spectrum of pharmacological properties, particularly within the field of cancer and antimicrobial therapy. While their structures illustrate the unmatched power of marine biosynthetic machinery, often exhibiting unsymmetrical connections with rare linkage frameworks, enhanced binding ability to a variety of pharmacologically relevant receptors has been also witnessed. The existence of a bifunctional linker to anchor two substrates, resulting in a higher concentration of pharmacophores in proximity to recognition sites of several receptors involved in human diseases, portrays this group of metabolites as privileged lead structures for advanced pre-clinical and clinical studies. Despite the structural novelty of various marine diketopiperazine dimers and their relevant bioactive properties in several models of disease, to our knowledge, this attractive subclass of compounds is reviewed here for the first time.
机译:迄今为止,迄今为止迄今为止迄今为止患有2,5-二酮哌嗪环的几种海洋天然产物,则似乎可以忽略二聚体框架的独特化学。通常报道来自海洋衍生的真菌菌株,许多天然存在的Diketopiperazine二聚体已被证明显示出广谱的药理学性质,特别是在癌症和抗微生物治疗领域内。虽然它们的结构说明了海洋生物合成机械的无与伦比的力量,但通常表现出与罕见的联系框架的不对称连接,也得到了增强的含有药理学相关受体的结合能力。锚定两种基板的双功能接头存在,导致较高浓度的药效,邻近人类疾病的几种受体的识别位点,将该组代谢物描绘为优先临床前和临床研究的特权铅结构。尽管在多种疾病模型中的各种海洋Diketoperazine二聚体和相关的生物活性性质的结构性新颖,但我们的知识,这是第一次审查了这种化合物的这种有吸引力的亚类。

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