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植物氮霉素类高度选择性抗生素生物合成中间体的结构确定和拦截。

Structure determination and interception of biosynthetic intermediates for the plantazolicin class of highly discriminating antibiotics.

出版信息

ACS Chem Biol. 2011 Dec 16;6(12):1307-13. doi: 10.1021/cb200339d. Epub 2011 Oct 6.

Abstract

The soil-dwelling, plant growth-promoting bacterium Bacillus amyloliquefaciens FZB42 is a prolific producer of complex natural products. Recently, a new FZB42 metabolite, plantazolicin (PZN), has been described as a member of the growing thiazole/oxazole-modified microcin (TOMM) family. TOMMs are biosynthesized from inactive, ribosomal peptides and undergo a series of cyclodehydrations, dehydrogenations, and other modifications to become bioactive natural products. Using high-resolution mass spectrometry, chemoselective modification, genetic interruptions, and other spectroscopic tools, we have determined the molecular structure of PZN. In addition to two conjugated polyazole moieties, the amino-terminus of PZN has been modified to N(α),N(α)-dimethylarginine. PZN exhibited a highly selective antibiotic activity toward Bacillus anthracis, but no other tested human pathogen. By altering oxygenation levels during fermentation, PZN analogues were produced that bear variability in their heterocycle content, which yielded insight into the order of biosynthetic events. Lastly, genome-mining has revealed the existence of four additional PZN-like biosynthetic gene clusters. Given their structural uniqueness and intriguing antimicrobial specificity, the PZN class of antibiotics may hold pharmacological value.

摘要

生存在土壤中、促进植物生长的细菌解淀粉芽孢杆菌 FZB42 是复杂天然产物的丰富生产者。最近,一种新的 FZB42 代谢产物植物杀菌素(PZN)被描述为不断增长的噻唑/噁唑修饰微菌素(TOMM)家族的一员。TOMMs 是从无活性的核糖体肽生物合成的,并经历一系列环脱水、脱氢和其他修饰,成为生物活性的天然产物。我们使用高分辨率质谱、化学选择性修饰、基因中断和其他光谱工具确定了 PZN 的分子结构。除了两个共轭多唑部分外,PZN 的氨基末端被修饰为 N(α),N(α)-二甲基精氨酸。PZN 对炭疽芽孢杆菌表现出高度选择性的抗生素活性,但对其他测试的人类病原体没有活性。通过在发酵过程中改变氧化水平,产生了具有不同杂环含量的 PZN 类似物,这为生物合成事件的顺序提供了线索。最后,基因组挖掘揭示了存在四个额外的 PZN 样生物合成基因簇。鉴于其结构独特性和有趣的抗菌特异性,PZN 类抗生素可能具有药理学价值。

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