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Coculture of Marine Streptomyces sp. With Bacillus sp. Produces a New Piperazic Acid-Bearing Cyclic Peptide

机译:海洋链霉菌共培养。与芽孢杆菌属。生产一种新的含哌嗪酸的环肽

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摘要

Microbial culture conditions in the laboratory, which conventionally involve the cultivation of one strain in one culture vessel, are vastly different from natural microbial environments. Even though perfectly mimicking natural microbial interactions is virtually impossible, the cocultivation of multiple microbial strains is a reasonable strategy to induce the production of secondary metabolites, which enables the discovery of new bioactive natural products. Our coculture of marine Streptomyces and Bacillus strains isolated together from an intertidal mudflat led to discover a new metabolite, dentigerumycin E (>1). Dentigerumycin E was determined to be a new cyclic hexapeptide incorporating three piperazic acids, N-OH-Thr, N-OH-Gly, β-OH-Leu, and a pyran-bearing polyketide acyl chain mainly by analysis of its NMR and MS spectroscopic data. The putative PKS-NRPS biosynthetic gene cluster for dentigerumycin E was found in the Streptomyces strain, providing clear evidence that this cyclic peptide is produced by the Streptomyces strain. The absolute configuration of dentigerumycin E was established based on the advanced Marfey's method, ROESY NMR correlations, and analysis of the amino acid sequence of the ketoreductase domain in the biosynthetic gene cluster. In biological evaluation of dentigerumycin E (>1) and its chemical derivatives [2-N,16-N-deoxydenteigerumycin E (>2) and dentigerumycin methyl ester (>3)], only dentigerumycin E exhibited antiproliferative and antimetastatic activities against human cancer cells, indicating that N-OH and carboxylic acid functional groups are essential for the biological activity.
机译:实验室中的微生物培养条件通常涉及在一个培养皿中培养一种菌株,与自然微生物环境有很大不同。尽管几乎不可能完全模仿天然微生物之间的相互作用,但多种微生物菌株的共培养是诱导次级代谢产物产生的合理策略,从而可以发现新的生物活性天然产物。我们从潮间带滩涂分离的海洋链霉菌和芽孢杆菌菌株的共培养导致发现了新的代谢产物,登革霉素E(> 1 )。主要通过对其NMR和MS光谱进行分析,确定了Dentigerumycin E是一种新的环状六肽,该肽结合了三个哌唑酸N-OH-Thr,N-OH-Gly,β-OH-Leu和带有吡喃的聚酮肽酰基链。数据。在链霉菌菌株中发现了假定的树胶霉素E的PKS-NRPS生物合成基因簇,这提供了清楚的证据表明该环肽是由链霉菌菌株产生的。基于先进的Marfey方法,ROESY NMR相关性和生物合成基因簇中酮还原酶结构域的氨基酸序列分析,确定了树胶霉素E的绝对构型。在对登革霉素E(> 1 )及其化学衍生物[2-N,16-N-脱氧齿芽孢霉素E(> 2 )和登革霉素霉素(> 3)的生物学评估中)],只有牙甲霉素E对人癌细胞显示出抗增殖和抗转移活性,表明N-OH和羧酸官能团对于生物活性至关重要。

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