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STRUCTURE OF THE A SITE OF ESCHERICHIA COLI 16S RIBOSOMAL RNA COMPLEXED WITH AN AMINOGLYCOSIDE ANTIBIOTIC

机译:带有氨基糖苷类抗生素的埃希氏大肠杆菌16S核糖体RNA的结构

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摘要

Aminoglycoside antibiotics that bind to 30S ribosomal A-site RNA cause misreading of the genetic code and inhibit translocation. The aminoglycoside antibiotic paromomycin binds specifically to an RNA oligonucleotide that contains the 30S subunit A site, and the solution structure of the RNA-paromomycin complex was determined by nuclear magnetic resonance spectroscopy. The antibiotic binds in the major groove of the model A-site RNA within a pocket created by an A-A base pair and a single bulged adenine. Specific interactions occur between aminoglycoside chemical groups important for antibiotic activity and conserved nucleotides in the RNA. The structure explains binding of diverse aminoglycosides to the ribosome, their specific activity against prokaryotic organisms, and various resistance mechanisms, and provides insight into ribosome function.
机译:与30S核糖体A位RNA结合的氨基糖苷类抗生素会导致基因密码的误读并抑制易位。氨基糖苷类抗生素巴龙霉素与包含30S亚基A位点的RNA寡核苷酸特异性结合,并通过核磁共振波谱确定了RNA-巴龙霉素复合物的溶液结构。抗生素结合在由A-A碱基对和单个凸出的腺嘌呤产生的口袋内的模型A位点RNA的主要凹槽中。在对抗生素活性重要的氨基糖苷化学基团与RNA中的保守核苷酸之间发生特异性相互作用。该结构解释了各种氨基糖苷与核糖体的结合,它们对原核生物的比活性以及各种抗性机制,并提供了对核糖体功能的了解。

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