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首页> 外文期刊>Zeitschrift fur Arznei- und Gewurzpflanzen >Muraymycin Nucleoside Antibiotics: Structure-Activity Relationship for Variations in the Nucleoside Unit
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Muraymycin Nucleoside Antibiotics: Structure-Activity Relationship for Variations in the Nucleoside Unit

机译:Muraymycin Nucleoside抗生素:结构 - 活性关系用于核苷单元的变化

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摘要

Muraymycins are a subclass of naturally occurring nucleoside antibiotics with promising antibacterial activity. They inhibit the bacterial enzyme translocase I (MraY), a clinically yet unexploited target mediating an essential intracellular step of bacterial peptidoglycan biosynthesis. Several structurally simplified muraymycin analogues have already been synthesized for structure-activity relationship (SAR) studies. We now report on novel derivatives with unprecedented variations in the nucleoside unit. For the synthesis of these new muraymycin analogues, we employed a bipartite approach facilitating the introduction of different nucleosyl amino acid motifs. This also included thymidine- and 5-fluorouridine-derived nucleoside core structures. Using an in vitro assay for MraY activity, it was found that the introduction of substituents in the 5-position of the pyrimidine nucleobase led to a significant loss of inhibitory activity towards MraY. The loss of nucleobase aromaticity (by reduction of the uracil C5-C6 double bond) resulted in a ca. tenfold decrease in inhibitory potency. In contrast, removal of the 2'-hydroxy group furnished retained activity, thus demonstrating that modifications of the ribose moiety might be well-tolerated. Overall, these new SAR insights will guide the future design of novel muraymycin analogues for their potential development towards antibacterial drug candidates.
机译:Muraymycins是天然存在的核苷抗生素的亚类,具有有前途的抗菌活性。它们抑制细菌酶译团I(MRAY),临床上尚未开发的靶标的细菌肽聚糖生物合成的基本细胞内步骤。已经合成了几种结构简化的Muraymycin类似物用于结构 - 活性关系(SAR)研究。我们现在报告新的衍生物具有前所未有的核苷单位变异。对于这些新的Muraymycin类似物的合成,我们使用一种双链方法,促进引入不同的核苷氨基酸基序。这也包括胸苷和5-氟酚衍生的核苷核心结构。使用体外测定来进行MRAY活性,发现在嘧啶核碱基的5位中引入取代基导致MRAY的显着损失的抑制活性。核碱酶芳香度(通过减少尿嘧啶C5-C6双键)导致CA.十倍降低抑制性效力。相反,除去所保留活性的2'-羟基群,因此证明核糖部分的修饰可能是良好的。总的来说,这些新的SAR见解将指导未来的Muraymycin类似物的设计,以便他们对抗菌药物候选者的潜在发育。

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