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The broad-spectrum antibiotic, zeamine, kills the nematode worm Caenorhabditis elegans

机译:广谱抗生素玉米amine胺杀死线虫蠕虫秀丽隐杆线虫

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Soil bacteria can be prolific producers of secondary metabolites and other biologically active compounds of economic and clinical importance. These natural products are often synthesized by large multi-enzyme complexes such as polyketide synthases (PKSs) or non-ribosomal peptide synthases (NRPSs). The plant-associated Gram-negative bacterium, Serratia plymuthica A153, produces several secondary metabolites and is capable of killing the nematode worm Caenorhabditis elegans ; a commonly used model for the study of bacterial virulence. In this study, we show that disruption of the hybrid PKS/NRPS zeamine ( zmn ) gene cluster results in the attenuation of “fast-killing” of C. elegans , indicating that zeamine has nematicidal activity. C. elegans also exhibits age-dependent susceptibility to zeamine, with younger worms being most sensitive to the bioactive molecule. The zmn gene cluster is widely distributed within Serratia and phytopathogenic Dickeya species and investigation of strains harboring the zmn gene cluster showed that several of them are highly virulent in C. elegans . Zeamine was described previously as a phytotoxin and broad-spectrum antibacterial compound. In addition to its nematicidal properties, we show here that zeamine can also kill Saccharomyces cerevisiae and Schizosaccharomyces pombe . The expression of the zmn gene cluster and regulation of zeamine production were also investigated. Transcription of the cluster was growth phase-dependent, and was modulated by the post-transcriptional RNA chaperone, Hfq. The results of this study show that zeamine is a highly toxic molecule with little, or no, apparent host specificity in very diverse biological systems. In its current form, zeamine(s) may be useful as a lead compound suitable for chemical modification and structure-activity assays. However, because of widespread non-selective toxicity in multiple bioassays, unmodified zeamine(s) is unlikely to be suitable as a therapeutic antibiotic.
机译:土壤细菌可能是次级代谢产物和其他具有经济和临床重要性的生物活性化合物的多产者。这些天然产物通常由大型的多酶复合物合成,例如聚酮化合物合酶(PKS)或非核糖体肽合酶(NRPS)。与植物相关的革兰氏阴性细菌Serratia plymuthica A153产生几种次级代谢产物,能够杀死线虫线虫秀丽隐杆线虫;研究细菌毒力的常用模型。在这项研究中,我们表明,杂种PKS / NRPS玉米胺(zmn)基因簇的破坏导致秀丽隐杆线虫“快速杀灭”的减弱,表明玉米胺具有杀线虫活性。秀丽隐杆线虫对玉米胺也表现出年龄依赖性,年轻的蠕虫对生物活性分子最敏感。 zmn基因簇广泛分布在沙雷氏菌和致病性迪卡物种中,对携带zmn基因簇的菌株进行的研究表明,其中有几种在秀丽隐线虫中具有高毒力。玉米胺曾被描述为一种植物毒素和广谱抗菌化合物。除了其杀线虫特性外,我们在这里表明,玉米黄胺还可以杀死酿酒酵母和粟酒裂殖酵母。还研究了zmn基因簇的表达和玉米胺的调节。该簇的转录是生长阶段依赖性的,并受转录后RNA伴侣Hfq的调节。这项研究的结果表明,玉米amine胺是一种剧毒分子,在非常多样的生物系统中几乎没有或没有明显的宿主特异性。以其当前形式,玉米醇溶蛋白可用作适合于化学修饰和结构活性测定的铅化合物。然而,由于在多种生物测定中广泛的非选择性毒性,未修饰的玉米胺不太可能适合作为治疗性抗生素。

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