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A ribosomal ATPase is a target for hygromycin B inhibition on Escherichia coli ribosomes.

机译:核糖体ATP酶是潮霉素B抑制大肠杆菌核糖体的靶标。

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We demonstrate that the transfer of fully charged aminoacyl-tRNAs into peptides directed by the MS2 RNA template requires both ATP and GTP, initiation factors (IF1, IF2, and IF3), elongation factors (EF-Tu, EF-Ts, and EF-G), and the ribosomal ATPase (RbbA). The nonhydrolyzable analogue AMPPCP inhibits the reactions, suggesting that hydrolysis of ATP is required for synthesis. The RbbA protein occurs bound to ribosomes and stimulates the ATPase activity of Escherichia coli 70S and 30S particles. The gene encoding RbbA harbors four ATP binding domains; the C-terminal half of the protein bears extensive sequence similarity to EF-3, a ribosome-dependent ATPase. Here, we show that the antibiotic hygromycin B selectively inhibits the ATPase activity of RbbA. Other antibiotics with similar effects on miscoding, streptomycin and neomycin, as well as antibiotics that impair peptide bond synthesis and translocation, had little effect on the ATPase activity of RbbA on 70S ribosomes. Immunoblot analysis indicates that at physiological concentrations, hygromycin B selectively releases RbbA from 70S ribosomes. Hygromycin B protects G1494 and A1408 in the decoding region, and RbbA enhances the reactivity of A889 and G890 of the 16S rRNA switch helix region. Cross-linking and X-ray diffraction data have revealed that this helix switch and the decoding region are in close proximity. Mutations in the switch helix (889-890) region affect translational fidelity and translocation. The binding site of hygromycin B and its known dual effect on the fidelity of decoding and translocation suggest a model for the action of this drug on ribosomes.
机译:我们证明,将完全充电的氨酰基tRNA转移到由MS2 RNA模板指导的肽中既需要ATP也需要GTP,起始因子(IF1,IF2和IF3),延伸因子(EF-Tu,EF-Ts和EF- G)和核糖体ATPase(RbbA)。不可水解的类似物AMPPCP抑制了反应,表明合成需要ATP的水解。 RbbA蛋白与核糖体结合,并刺激大肠杆菌70S和30S颗粒的ATPase活性。编码RbbA的基因具有四个ATP结合结构域。该蛋白的C端一半与核糖体依赖性ATPase EF-3具有广泛的序列相似性。在这里,我们显示抗生素潮霉素B选择性抑制RbbA的ATPase活性。其他对误码,链霉素和新霉素有类似作用的抗生素,以及会损害肽键合成和易位的抗生素,对RbA在70S核糖体上的ATPase活性影响很小。免疫印迹分析表明,在生理浓度下,潮霉素B从70S核糖体中选择性释放RbbA。潮霉素B在解码区域保护G1494和A1408,RbbA增强16S rRNA开关螺旋区域的A889和G890的反应性。交联和X射线衍射数据显示该螺旋开关和解码区域非常接近。开关螺旋(889-890)区的突变影响翻译的保真度和易位。潮霉素B的结合位点及其对解码和易位保真度的双重影响为该药物对核糖体的作用提供了模型。

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