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Effect of mutations in the A site of 16 S rRNA on aminoglycoside antibiotic-ribosome interaction.

机译:16 S rRNA A位点突变对氨基糖苷类抗生素-核糖体相互作用的影响。

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摘要

Decoding of genetic information occurs upon interaction of an mRNA codon-tRNA anticodon complex with the small subunit of the ribosome. The ribosomal decoding region is associated with highly conserved sequences near the 3' end of 16 S rRNA. The decoding process is perturbed by the aminoglycoside antibiotics, which also interact with this region of rRNA. Mutations of certain nucleotides in rRNA reduce aminoglycoside binding affinity, as previously demonstrated using a model RNA oligonucleotide system. Here, predictions from the oligonucleotide system were tested in the ribosome by mutation of universally conserved nucleotides at 1406 to 1408 and 1494 to 1495 in the decoding region of plasmid-encoded bacterial 16 S rRNA. Phenotypic changes range from the benign effect of U1406-->A or A1408-->G substitutions, to the highly deleterious 1406G and 1495 mutations that assemble into 30 S subunits but are defective in forming functional ribosomes. Changes in the local conformation of the decoding region caused by these mutations were identified by chemical probing of isolated 30 S subunits. Ribosomes containing 16 S rRNA with mutations at positions 1408, 1407+1494, or 1495 had reduced affinity for the aminoglycoside paromomycin, whereas no discernible reduction in affinity was observed with 1406 mutant ribosomes. These data are consistent with prior NMR structural determination of aminoglycoside interaction with the decoding region, and further our understanding of how aminoglycoside resistance can be conferred. Copyright 1999 Academic Press.
机译:基因信息的解码发生在mRNA密码子-tRNA反密码子复合物与核糖体的小亚基相互作用时。核糖体解码区与16 S rRNA 3'末端附近的高度保守序列相关。解码过程受到氨基糖苷类抗生素的干扰,后者也与rRNA的这一区域相互作用。如先前使用模型RNA寡核苷酸系统所证明的,rRNA中某些核苷酸的突变降低了氨基糖苷结合亲和力。在这里,通过编码质粒的细菌16 S rRNA的解码区域中1406至1408年和1494至1495年普遍保守的核苷酸突变,在核糖体中测试了来自寡核苷酸系统的预测。表型变化的范围从U1406-> A或A1408-> G替代的良性作用,到组装成30 S亚基但在形成功能性核糖体方面有缺陷的高度有害的1406G和1495突变。通过突变分离的30 S亚基的化学探测,可以确定由这些突变引起的解码区局部构象的变化。含有在位置1408、1407 + 1494或1495处突变的16 S rRNA的核糖体对氨基糖苷巴龙霉素的亲和力降低,而对1406个突变核糖体则没有亲和力的降低。这些数据与氨基糖苷与解码区相互作用的先前的NMR结构测定一致,并且进一步与我们对如何赋予氨基糖苷抗性的理解相一致。版权所有1999,学术出版社。

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