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Structures of proline-rich peptides bound to the ribosome reveal a common mechanism of protein synthesis inhibition

机译:与核糖体结合的富含脯氨酸的肽的结构揭示了蛋白质合成抑制的常见机制

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摘要

With bacterial resistance becoming a serious threat to global public health, antimicrobial peptides (AMPs) have become a promising area of focus in antibiotic research. AMPs are derived from a diverse range of species, from prokaryotes to humans, with a mechanism of action that often involves disruption of the bacterial cell membrane. Proline-rich antimicrobial peptides (PrAMPs) are instead actively transported inside the bacterial cell where they bind and inactivate specific targets. Recently, it was reported that some PrAMPs, such as Bac71–35, oncocins and apidaecins, bind and inactivate the bacterial ribosome. Here we report the crystal structures of Bac71–35, Pyrrhocoricin, Metalnikowin and two oncocin derivatives, bound to the Thermus thermophilus 70S ribosome. Each of the PrAMPs blocks the peptide exit tunnel of the ribosome by simultaneously occupying three well characterized antibiotic-binding sites and interferes with the initiation step of translation, thereby revealing a common mechanism of action used by these PrAMPs to inactivate protein synthesis. Our study expands the repertoire of PrAMPs and provides a framework for designing new-generation therapeutics.
机译:随着细菌耐药性严重威胁全球公共卫生,抗菌肽(AMPs)已成为抗生素研究中一个有希望的重点领域。 AMP衍生自从原核生物到人类的多种物种,其作用机制通常涉及破坏细菌细胞膜。富含脯氨酸的抗菌肽(PrAMPs)可以在细菌细胞内主动转运,并与特定靶标结合并使其失活。最近,据报道,某些PrAMPs,例如Bac71–35,癌蛋白和阿德霉素,会结合并灭活细菌核糖体。在这里,我们报告了Bac71–35,吡咯菌霉素,金属尼克蛋白和两种癌基因衍生物的晶体结构,它们与嗜热菌70S核糖体结合。每个PrAMP通过同时占据三个特征明确的抗生素结合位点来阻断核糖体的肽出口通道,并干扰翻译的起始步骤,从而揭示了这些PrAMP用来失活蛋白质合成的共同作用机制。我们的研究扩大了PrAMP的范围,并为设计新一代治疗剂提供了框架。

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