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Saccharide-RNA recognition in a complex formed between neomycin B and an RNA aptamer.

机译:新霉素B与RNA适体之间形成的复合物中的糖精RNA识别。

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BACKGROUND: Aminoglycoside antibiotics can target RNA folds with micromolar affinity and inhibit biological processes ranging from protein biosynthesis to ribozyme action and viral replication. Specific features of aminoglycoside antibiotic-RNA recognition have been probed using chemical, biochemical, spectroscopic and computational approaches on both natural RNA targets and RNA aptamers identified through in vitro selection. Our previous studies on tobramycin-RNA aptamer complexes are extended to neomycin B bound to its selected RNA aptamer with 100 nM affinity. RESULTS: The neamine moiety (rings I and II) of neomycin B is sandwiched between the major groove floor of a 'zippered-up' G.U mismatch aligned segment and a looped-out purine base that flaps over the bound antibiotic. Specific intermolecular hydrogen bonds are observed between the charged amines of neomycin B and base mismatch edges and backbone phosphates. These interactions anchor 2-deoxystreptamine ring I and pyranose ring II within the RNA-binding pocket. CONCLUSIONS: The RNA aptamer complexes with tobramycin and neomycin B utilize common architectural principles to generate RNA-binding pockets for the bound aminoglycoside antibiotics. In each case, the 2-deoxystreptamine ring I and an attached pyranose ring are encapsulated within the major groove binding pocket, which is lined with mismatch pairs. The bound antibiotic within the pocket is capped over by a looped-out base and anchored in place through intermolecular hydrogen bonds involving charged amine groups of the antibiotic.
机译:背景:氨基糖苷类抗生素可以微摩尔亲和力靶向RNA折叠,并抑制从蛋白质生物合成到核酶作用和病毒复制的生物学过程。已使用化学,生物化学,光谱学和计算方法对天然RNA靶标和通过体外选择鉴定的RNA适体进行了探查,从而探明了氨基糖苷类抗生素RNA识别的特定特征。我们先前对妥布霉素-RNA适体复合物的研究已扩展到以100 nM亲和力结合其所选RNA适体的新霉素B。结果:新霉素B的神经胺部分(环I和环II)夹在“拉链” G.U不匹配对齐片段的主要凹槽底部和扑通结合抗生素的环状嘌呤碱基之间。在新霉素B的带电荷胺与碱基错配边缘和主链磷酸酯之间观察到特定的分子间氢键。这些相互作用将2-脱氧链烷胺环I和吡喃糖环II锚定在RNA结合口袋中。结论:与妥布霉素和新霉素B组成的RNA适体复合物利用共同的结构原理为结合的氨基糖苷类抗生素产生RNA结合口袋。在每种情况下,将2-脱氧链烷胺环I和一个连接的吡喃糖环包裹在主凹槽结合袋中,该结合袋衬有错配对。口袋中结合的抗生素被环状碱基覆盖,并通过涉及抗生素带电胺基团的分子间氢键固定在适当位置。

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