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

机译:抗生素抗药性ABCF蛋白可重置核糖体的肽基转移酶中心以抵抗翻译停滞

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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 VgaALC and Enterococcus faecalis LsaA on the ribosome. We demonstrate that VgaALC 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 EQ2 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 EQ2 mutant, is the extended inter-ABC domain linker region. Deletion of the linker region renders wild type VgaALC inactive in antibiotic protection and the EQ2 mutant inactive in PTC inhibition.
机译:ATP结合盒F(ABCF)家族中的几种ATP酶赋予了对大环内酯类,林可酰胺和链霉菌素(MLS)抗生素的抗性。 MLS是结构上不同的类别,但会抑制一个共同的目标:核糖体的肽基转移酶(PTC)活性位点。最近已显示出抗生素抗药性(ARE)ABCF可通过直接的核糖体保护起作用,但是尚缺乏这种抗药性机制的机制细节。使用重构的翻译系统,我们剖析了溶血性葡萄球菌VgaALC和粪肠球菌LsaA在核糖体上的分子机制。我们证明,VgaALC是一种NTPase,可作为分子机器运行,严格要求NTP水解(不仅仅是NTP结合)来保护抗生素。此外,当以NTP结合形式与核糖体结合时,水解失活的EQ2 ABCF ARE突变体会抑制肽基转移酶活性,表明ABCF ARE与PTC之间存在直接相互作用。由野生型ABCF ARE取代抗生素并由EQ2突变体抑制PTC的可能的结构候选物是扩展的ABC间结构域接头区域。接头区的缺失使得野生型VgaALC在抗生素保护中失活,而EQ2突变体在PTC抑制中失活。

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