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首页> 外文期刊>Russian journal of bioorganic chemistry >Glycosides of hydroxylamine derivatives: I. Phase transfer synthesis and the study of the influence of glucosaminides of isatine 3-oximes on bacterial luminescence
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Glycosides of hydroxylamine derivatives: I. Phase transfer synthesis and the study of the influence of glucosaminides of isatine 3-oximes on bacterial luminescence

机译:羟胺衍生物的糖苷:I.相转移合成及异丁烯酮3-肟的氨基葡萄糖苷对细菌发光的影响研究

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摘要

Easily deprotoned hydroxyl groups of isatine 3-oximes were glycosylated in high yields by α-D-glucosaminyl chloride peracetate in the solid potassium carbonate-acetonitrile phase transfer system. It was found that catalytic amounts of 15-crown-5 supported a twofold acceleration of the process. The resulting β-D-glucosaminides were identified by 1H NMR spectroscopy. Specific features of the NMR spectra of the synthesized compounds are discussed in comparison with those of other l-O-derivatives of N-acetylglu-cosamine. Biological activities of oximes with different substituents in the isatin residue were studied by the bacterial luminescence inhibition test with marine luminescent bacteria Photobacterium leiognathi Sh1. The relationship of the structures of the isatin N-substituent and the 5-indolyl substituent and the glycoside capacity to suppress bacterial luminescence was analyzed.
机译:在固体碳酸钾-乙腈相转移系统中,α-D-氨基葡萄糖酰氯过乙酸盐可将高效率地将异丁烯3-肟的去质子化羟基糖基化。发现催化量的15-冠-5支持该过程的两倍加速。通过1 H NMR光谱法鉴定得到的β-D-氨基葡萄糖苷。与N-乙酰基葡糖胺的其他1-O-衍生物相比,讨论了合成化合物的NMR光谱的特定特征。通过海洋发光细菌Leiognathi Sh1对细菌的发光抑制试验研究了在靛红素残基中具有不同取代基的肟的生物活性。分析了靛红N-取代基和5-吲哚基取代基的结构与糖苷抑制细菌发光的能力之间的关系。

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