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Structure-Activity Relationships among the Kanamycin Aminoglycosides: Role of Ring I Hydroxyl and Amino Groups

机译:卡那霉素氨基糖苷类之间的结构活性关系:第一环羟基和氨基的作用。

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摘要

The kanamycins form an important subgroup of the 4,6-disubstituted 2-deoxystreptamine aminoglycoside antibiotics, comprising kanamycin A, kanamycin B, tobramycin, and dibekacin. These compounds interfere with protein synthesis by targeting the ribosomal decoding A site, and they differ in the numbers and locations of amino and hydroxy groups of the glucopyranosyl moiety (ring I). We synthesized kanamycin analogues characterized by subtle variations of the 2′ and 6′ substituents of ring I. The functional activities of the kanamycins and the synthesized analogues were investigated (i) in cell-free translation assays on wild-type and mutant bacterial ribosomes to study drug-target interaction, (ii) in MIC assays to assess antibacterial activity, and (iii) in rabbit reticulocyte translation assays to determine activity on eukaryotic ribosomes. Position 2′ forms an intramolecular H bond with O5 of ring II, helping the relative orientations of the two rings with respect to each other. This bond becomes critical for drug activity when a 6′-OH substituent is present.
机译:卡那霉素形成4,6-二取代的2-脱氧链胺胺氨基糖苷抗生素的重要亚组,包括卡那霉素A,卡那霉素B,妥布霉素和地贝卡星。这些化合物通过靶向核糖体解码A位点来干扰蛋白质合成,并且它们在吡喃葡萄糖基部分(环I)的氨基和羟基的数量和位置上有所不同。我们合成了以环I 2'和6'取代基的细微变化为特征的卡那霉素类似物。研究了卡那霉素和合成类似物的功能活性(i)在野生型和突变型细菌核糖体的无细胞翻译测定中(ii)在MIC分析中评估抗菌活性,以及​​(iii)在兔网织红细胞翻译分析中确定对真核生物核糖体的活性。位置2'与环II的O 5形成分子内H键,从而帮助两个环相对于彼此的相对取向。当存在6'-OH取代基时,该键对于药物活性至关重要。

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