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Antibiotic resistance ABCF proteins reset the peptidyl transferase centre of the ribosome to counter translational arrest

机译:抗生素抗性ABCF蛋白质复位核糖体的肽基转移酶中心以对抗翻译

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摘要

Several ATPases in the ATP-binding cassette F (ABCF) family confer resistance to macrolides, lincosamides and streptogramins (MLS) antibiotics. MLS are structurally distinct classes, but inhibit a common target: the peptidyl transferase (PTC) active site of the ribosome. Antibiotic resistance (ARE) ABCFs have recently been shown to operate through direct ribosomal protection, but the mechanistic details of this resistance mechanism are lacking. Using a reconstituted translational system, we dissect the molecular mechanism of Staphylococcus haemolyticus VgaA(LC) and Enterococcus faecalis LsaA on the ribosome. We demonstrate that VgaA(LC) is an NTPase that operates as a molecular machine strictly requiring NTP hydrolysis (not just NTP binding) for antibiotic protection. Moreover, when bound to the ribosome in the NTP-bound form, hydrolytically inactive EQ(2) ABCF ARE mutants inhibit peptidyl transferase activity, suggesting a direct interaction between the ABCF ARE and the PTC. The likely structural candidate responsible for antibiotic displacement by wild type ABCF AREs, and PTC inhibition by the EQ(2) mutant, is the extended inter-ABC domain linker region. Deletion of the linker region renders wild type VgaA(LC) inactive in antibiotic protection and the EQ(2) mutant inactive in PTC inhibition.
机译:ATP结合盒F(ABCF)家族的几个ATP酶赋予大溴化硼,林膦酰胺和链条(MLS)抗生素的抗性。 MLS是在结构上不同的类别,但抑制常见的靶标:核糖体的肽基转移酶(PTC)活性位点。最近已显示抗生素抗性(AS)ABCFS通过直接核糖体保护操作,但缺乏这种阻力机制的机械细节。使用重构的翻译系统,将葡萄球菌的分子机制解剖核糖体上的葡萄球菌血醇葡萄球菌(LC)和肠球菌粪便。我们证明VGAA(LC)是一种NTP酶,其作为严格要求NTP水解(不仅仅是NTP结合)的分子机器,用于抗生素保护。此外,当在NTP结合形式中与核糖体结合时,水解无效的EQ(2)ABCF是突变体抑制肽酰转移酶活性,表明ABCF之间的直接相互作用是和PTC。负责野生型ABCF ARES的抗生素位移的可能结构候选物,以及由EQ(2)突变体的PTC抑制是延伸的ABC间畴连接区域。缺失接头区域使抗生素保护中无活性的野生型VGAA(LC)和PTC抑制中无活性的EQ(2)突变体。

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