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Drug Sensing by the Ribosome Induces Translational Arrest via Active Site Perturbation

机译:核糖体的药物感测通过活动部位扰动引起翻译逮捕。

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During protein synthesis, nascent polypeptide chains within the ribosomal tunnel can act in cis to induce ribosome stalling and regulate expression of downstream genes. The Staphylococcus aureus ErmCL leader peptide induces stalling in the presence of clinically important macrolide antibiotics, such as erythromycin, leading to the induction of the downstream macrolide resistance methyltrans-ferase ErmC. Here, we present a cryo-electron microscopy (EM) structure of the erythromycin-dependent ErmCL-stalled ribosome at 3.9 A resolution. The structure reveals how the ErmCL nascent chain directly senses the presence of the tunnel-bound drug and thereby induces allosteric confor-mational rearrangements at the peptidyltransferase center (PTC) of the ribosome. ErmCL-induced perturbations of the PTC prevent stable binding and accommodation of the aminoacyl-tRNA at the A-site, leading to inhibition of peptide bond formation and translation arrest.
机译:在蛋白质合成过程中,核糖体通道内的新生多肽链可以顺式作用,诱导核糖体停滞并调节下游基因的表达。在临床上重要的大环内酯类抗生素(如红霉素)存在下,金黄色葡萄球菌ErmCL前导肽诱导停滞,导致下游大环内酯类耐药性甲基转移酶ErmC的诱导。在这里,我们介绍了红霉素依赖性ErmCL固定核糖体在3.9 A分辨率下的低温电子显微镜(EM)结构。该结构揭示了ErmCL新生链如何直接检测隧道结合药物的存在,从而在核糖体的肽基转移酶中心(PTC)处诱导变构构象重排。 ErmCL诱导的PTC扰动会阻止A位置的氨酰基tRNA的稳定结合和调节,从而抑制肽键形成和翻译阻滞。

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