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首页> 外文期刊>Molecular cell >Capreomycin binds across the ribosomal subunit interface using tlyA-encoded 2 '-O-methylations in 16S and 23S rRNAs
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Capreomycin binds across the ribosomal subunit interface using tlyA-encoded 2 '-O-methylations in 16S and 23S rRNAs

机译:在16S和23S rRNA中,使用tlyA编码的2'-O-甲基化,Capreomycin跨核糖体亚基界面结合

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The cyclic peptide antibiotics capreomycin and viomycin are generally effective against the bacterial pathogen Mycobacterium tuberculosis. However, recent virulent isolates have become resistant by inactivation of their tlA gene. We show here that tlyA encodes a 2'-O-methyltransferase that modifies nucleotide C1409 in helix 44 of 16S rRNA and nucleotide C1920 in helix 69 of 23S rRNA. Loss of these previously unidentified rRNA methylations confers resistance to capreomycin and viomycin. Many bacterial genera including enterobacteria lack a tlA gene and the ensuing methylations and are less susceptible than mycobacteria to capreomycin and viomycin. We show that expression of recombinant tlA in Escherichia coli markedly increases susceptibility to these drugs. When the ribosomal subunits associate during translation, the two tlA-encoded methylations are brought into close proximity at interbridge B2a. The location of these methylations indicates the binding site and inhibitory mechanism of capreomycin and viomycin at the ribosome subunit interface.
机译:环状肽抗生素卡普霉素和紫霉素通常对细菌性病原体结核分枝杆菌有效。然而,最近的毒性分离株已经通过其tlA基因的失活而变得具有抗性。我们在这里显示tlyA编码2'-O-甲基转移酶,该酶修饰16S rRNA螺旋44中的核苷酸C1409和23S rRNA螺旋69中的核苷酸C1920。这些先前未鉴定的rRNA甲基化的丧失赋予对毛霉素和维霉素的抗性。许多细菌属(包括肠杆菌属)缺乏tlA基因和随之而来的甲基化,并且比分枝杆菌更不容易受到卡普霉素和维霉素的感染。我们表明,在大肠杆菌中重组tlA的表达明显增加了对这些药物的敏感性。当核糖体亚基在翻译过程中缔合时,两个tlA编码的甲基化在桥间B2a处非常接近。这些甲基化的位置表明核糖体亚基界面处的红霉素和紫霉素的结合位点和抑制机理。

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