首页> 外文期刊>The Journal of Antibiotics: An International Journal >NMR and Molecular Modelling Studies of the Binding of Amicetin Antibiotic to Conserved Secondary Structural Motifs of 23S Ribosomal RNAs
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NMR and Molecular Modelling Studies of the Binding of Amicetin Antibiotic to Conserved Secondary Structural Motifs of 23S Ribosomal RNAs

机译:NMR和分子建模研究Amicetin抗生素与23S核糖体RNA保守二级结构基序的结合。

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摘要

The interaction of a highly conserved secondary structural RNA motif of Halobacterium halobium and Escherichia coli 23 S ribosomal RNAs with the peptidyl transferase inhibitor antibiotic amicetin has been investigated by proton NMR spectroscopy and molecular modelling.The NMR spectra of the synthetic 35mer RNA motifs revealed spectral features characteristic of a stable, well folded A-RNA type tertiary conformation, including resolved resonances assigned to unpaired bases located in the middle of the motif strongly implicated in amicetin binding.Addition of amicetin to the 35mer RNA samples was accompanied by significant and discrete changes to the spectra which can be qualitatively interpreted to the changes induced to the local conformation of the RNA motifs arising from the formation of a specific complex with amicetin.These results are also supported by the unconstrained molecular model of RNA-amicetin complex which highlights potential interactions between the two molecular components.
机译:通过质子NMR光谱和分子建模研究了卤代盐杆菌和大肠杆菌23 S核糖体RNA的高度保守的二级结构RNA基序与肽基转移酶抑制剂抗生素amicetin的相互作用。合成的35mer RNA基序的NMR光谱揭示了光谱特征稳定,折叠良好的A-RNA型三级构象的特征,包括分配给位于基序中间的不成对碱基的解析共振,这与阿米斯汀的结合强烈相关。将阿米斯汀添加到35mer RNA样品中会伴随显着和离散的变化可以定性地解释因与阿米斯汀形成特定复合物而引起的RNA基序局部构象变化的光谱,这些结果也得到了RNA-阿米替林复合物不受约束的分子模型的支持,该模型突出了两者之间的潜在相互作用两个分子的组成部分ents。

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