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首页> 外文期刊>Angewandte Chemie >Discovery, Structure Elucidation, and Biological Characterization of Nannocystin A, a Macrocyclic Myxobacterial Metabolite with Potent Antiproliferative Properties
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Discovery, Structure Elucidation, and Biological Characterization of Nannocystin A, a Macrocyclic Myxobacterial Metabolite with Potent Antiproliferative Properties

机译:Nannocystin A,具有强抗增殖特性的大环粘细菌代谢产物的发现,结构阐明和生物学特性

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摘要

Microbial natural products are a rich source of bioactive molecules to serve as drug leads and/or biological tools. We investigated a little-explored myxobacterial genus, Nannocystis sp., and discovered a novel 21-membered macrocyclic scaffold that is composed of a tripeptide and a polyketide part with an epoxyamide moiety. The relative and absolute configurations of the nine stereocenters was determined by NMR spectroscopy, molecular dynamics calculations, chemical degradation, and X-ray crystallography. The compound, named nannocystin A (1), was found to inhibit cell proliferation at low nanomolar concentrations through the early induction of apoptosis. The mode of action of 1 could not be matched to that of standard drugs by transcriptional profiling and biochemical experiments. An initial investigation of the structure-activity relationship based on seven analogues demonstrated the importance of the epoxide moiety for high activity.
机译:微生物天然产物是生物活性分子的丰富来源,可以用作药物线索和/或生物工具。我们调查了一个很少探索的黏细菌属,Nannocystis sp。,并发现了一种新型的21元大环骨架,该骨架由三肽和带有环氧酰胺部分的聚酮部分组成。九个立体中心的相对和绝对构型由NMR光谱,分子动力学计算,化学降解和X射线晶体学确定。该化合物名为nannocystin A(1),被发现通过早期诱导凋亡而在低纳摩尔浓度下抑制细胞增殖。通过转录谱分析和生化实验,1的作用方式无法与标准药物匹配。基于七个类似物的结构-活性关系的初步研究表明,环氧部分对于高活性非常重要。

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