首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Antibacterial low-molecular-weight compounds produced by the marine bacterium Rheinheimera japonica KMM 9513(T)
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Antibacterial low-molecular-weight compounds produced by the marine bacterium Rheinheimera japonica KMM 9513(T)

机译:由海洋细菌rheinheimera japonica mmm 9513产生的抗菌低分子量化合物(t)

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Strain KMM 9513(T) was isolated from a sediment sample collected from the Sea of Japan seashore and selected due to its ability to inhibit indicator bacterial growth. The strain KMM 9513(T) has been recently described as a novel species Rheinheimera japonica. This study was undertaken to determine which substances produced by strain KMM 9513(T) could be responsible for its antimicrobial activity. Eight compounds were obtained from an ethyl acetate extract of R. japonica KMM 9513(T). The structures of five diketopiperazines (4-8) and diisobutyl-, dibutyl- and bis(2-ethylhexyl) phthalates (1-3) were established on the basis of detailed interpretation of NMR data, by Marfey method and optical rotation data. The structures of diketopiperazines were determined as cyclo-(l-valyl-l-proline), cyclo-(l-valyl-d-proline), cyclo-(l-phenylalanyl-l-proline), cyclo-(l-leucyl-l-proline), and cyclo-(l-phenylalanyl-d-proline). Compounds 1-3, 5 and 8 revealed antimicrobial activities against Bacillus subtilis and/or Enterococcus faecium and Staphylococcus aureus. In this paper, we describe the isolation and structural elucidation of the isolated compounds 1-8. This is the first report of the characterisation of low molecular weight antibacterial metabolites produced by a member of the genus Rheinheimera.
机译:菌株KMM 9513(T)与日本海滨海洋海洋收集的沉积物样品中分离出来,并因其抑制指示剂细菌生长的能力而选定。菌株KMM 9513(T)已被描述为新型rheinheimera japonica。本研究旨在确定由菌株KMM 9513(T)产生的物质可能是其抗微生物活性的原因。从R.PMM 9513(T)的乙酸乙酯提取物中获得8种化合物。基于NMR数据的详细解释,在MARFEY方法和光学旋转数据的基础上建立五种二酮哌嗪(4-8)和二异丁基 - ,二丁基和双(2-乙基己基)邻苯二甲酸酯(1-3)的结构。二酮哌嗪的结构被确定为环 - (L-缬氨酸-1-脯氨酸),环 - (L-缬氨酸-D-脯氨酸),环 - (L-苯基-L-脯氨酸),环 - (L-休糖基 - L-脯氨酸)和环(L-苯基-D-脯氨酸)。化合物1-3,5和8揭示了针对枯草芽孢杆菌和/或肠球菌饲料和金黄色葡萄球菌的抗微生物活性。在本文中,我们描述了分离的化合物1-8的分离和结构阐明。这是由rheinheimera属的成员产生的低分子量抗菌代谢物表征的第一个报告。

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