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Puromycin-rRNA interaction sites at the peptidyl transferase center.

机译:嘌呤霉素-rRNA相互作用位点位于肽基转移酶中心。

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The binding site of puromycin was probed chemically in the peptidyl-transferase center of ribosomes from Escherichia coli and of puromycin-hypersensitive ribosomes from the archaeon Haloferax gibbonsii. Several nucleotides of the 23S rRNAs showed altered chemical reactivities in the presence of puromycin. They include A2439, G2505, and G2553 for E. coli, and G2058, A2503, G2505, and G2553 for Hf. gibbonsii (using the E. coli numbering system). Reproducible enhanced reactivities were also observed at A508 and A1579 within domains I and III, respectively, of E. coli 23S rRNA. In further experiments, puromycin was shown to produce a major reduction in the UV-induced crosslinking of deacylated-(2N3A76)tRNA to U2506 within the P' site of E. coli ribosomes. Moreover, it strongly stimulated the putative UV-induced crosslink between a streptogramin B drug and m2A2503/psi2504 at an adjacent site in E. coli 23S rRNA. These data strongly support the concept that puromycin, along with other peptidyl-transferase antibiotics, in particular the streptogramin B drugs, bind to an RNA structural motif that contains several conserved and accessible base moieties of the peptidyl transferase loop region. This streptogramin motif is also likely to provide binding sites for the 3' termini of the acceptor and donor tRNAs. In contrast, the effects at A508 and A1579, which are located at the exit site of the peptide channel, are likely to be caused by a structural effect transmitted along the peptide channel.
机译:在大肠杆菌核糖体和古细菌Haloferax gibbonsii的嘌呤霉素超敏感核糖体的肽基转移酶中心化学探测嘌呤霉素的结合位点。在嘌呤霉素存在下,23S rRNA的几个核苷酸显示出化学反应性的改变。它们包括用于大肠杆菌的A2439,G2505和G2553,以及用于Hf的G2058,A2503,G2505和G2553。 gibbonsii(使用大肠杆菌编号系统)。还分别在大肠杆菌23S rRNA的结构域I和III中的A508和A1579处观察到了可再现的增强反应性。在进一步的实验中,嘌呤霉素显示出在大肠杆菌核糖体的P'位点内,紫外线诱导的脱酰-(2N3A76)tRNA与U2506交联的作用大大降低。此外,它强烈刺激了链霉菌素B药物与大肠杆菌23S rRNA相邻位置的m2A2503 / psi2504之间的紫外线诱导的交联。这些数据强烈支持嘌呤霉素与其他肽基转移酶抗生素(尤其是链霉菌素B药物)结合到RNA结构基序,该基序包含肽基转移酶环区的几个保守且可及的碱基部分。这种链霉菌素基序也可能为受体和供体tRNA的3'末端提供结合位点。相反,位于肽通道出口位点的A508和A1579处的效应很可能是由沿肽通道传递的结构效应引起的。

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