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首页> 外文期刊>Journal of natural products >Antibacterial Secondary Metabolites from an Endophytic Fungus, Eupenicillium sp LG41
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Antibacterial Secondary Metabolites from an Endophytic Fungus, Eupenicillium sp LG41

机译:内生真菌Eupenicillium sp LG41的抗菌次级代谢产物

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Two new compounds containing the decalin moiety, eupenicinicols A and B (1 and 2), two new sirenin derivatives, eupenicisirenins A and B (3 and 4), and four known compounds, (2S)-butylitaconic acid (5), (2S)-hexylitaconic acid (6), xanthomegnin (7), and viridicatumtoxin (8), were isolated from an endophytic fungus, Eupenicillium sp. LG41, harbored in the roots of the Chinese medicinal plant Xanthium sibiricum. Their structures were confirmed through combined spectroscopic analysis (NMR and HRMS(n)), and their absolute configurations were deduced by ECD calculations or optical rotation data. Since the endophytic fungus was isolated from the roots, the antibacterial efficacies of the compounds 1-6 were investigated against Bacillus subtilis and Acinetobacter sp. BD4, which typically inhabit soil, as well as the clinically important Staphylococcus aureus and Escherichia coli. (2S)-Butylitaconic acid (5) and (2S)-hexylitaconic acid (6) exhibited pronounced efficacy against Acinetobacter sp., corroborating the notion that root-endophytes provide chemical defense to the host plants. Compound 2 was highly active against the clinically relevant S. aureus. By comparing 1 with 2, it was revealed that altering the substitution at C-11 could drastically increase the antibacterial efficacy of 1. Our study reveals plausible ecological roles of the endophyte and its potential pharmaceutical use as a source of antibacterial compounds.
机译:两种含有十氢化萘部分的新化合物,杜仲尼古丁醇A和B(1和2),两种新的sirenin衍生物,eupenicisirenins A和B(3和4),以及四种已知化合物,(2S)-丁基衣康酸(5S),(2S从内生真菌Eupenicillium sp。分离得到己基衣康酸(6),黄原菌素(7)和弧菌毒素(8)。 LG41,藏于中药黄原木的根中。通过组合光谱分析(NMR和HRMS(n))确定了它们的结构,并通过ECD计算或旋光数据推导出了它们的绝对构型。由于从根中分离出内生真菌,因此研究了化合物1-6对枯草芽孢杆菌和不动杆菌属的抗菌作用。 BD4通常居住在土壤中,还有临床上重要的金黄色葡萄球菌和大肠杆菌。 (2S)-丁基衣康酸(5)和(2S)-己基衣康酸(6)对不动杆菌具有明显的功效,证实了根-内生菌为宿主植物提供化学防御作用的观点。化合物2对临床相关的金黄色葡萄球菌具有高活性。通过将1与2进行比较,我们发现改变C-11处的取代可以大大提高1的抗菌效力。我们的研究揭示了内生菌的合理生态作用及其作为抗菌化合物来源的潜在药物用途。

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