Methylation of immature small ribosomal subunits by methyltransferases conferring aminoglycoside resistance

IF 3 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Archives of biochemistry and biophysics Pub Date : 2025-07-01 Epub Date: 2025-04-11 DOI:10.1016/j.abb.2025.110422
Marko Močibob , Sonja Obranić , Domagoj Kifer , Jasmina Rokov-Plavec , Gordana Maravić-Vlahoviček
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Abstract

Aminoglycosides are broad-spectrum antibiotics critical to clinical treatment, but the emergence of bacterial resistance, particularly through 16S rRNA methyltransferases, has compromised their efficacy. These enzymes, originally discovered in natural aminoglycoside producers, confer resistance by methylating nucleotides G1405 and A1408 in 16S rRNA, blocking antibiotic binding to the ribosome. This study investigated the binding affinities and methylation activities of 16S rRNA methyltransferases KamB, NpmA, RmtA, RmtC, and Sgm with immature 30S ribosomal subunits from E. coli strains lacking RimM and YjeQ ribosomal assembly factors. Binding affinities to mature 30S ribosomal subunits and immature 30S assembly forms isolated from ΔyjeQ and ΔrimM strains were determined by microscale thermophoresis and interactions were further validated with in vitro pull-down assays. Methylation of immature 30S subunits was examined with primer extension on 16S rRNA extracted from methylation assays in vitro and from cells with immature 30S subunits expressing 16S rRNA methyltransferases in vivo, showing successful methylation of target nucleotides in both experimental systems. The results reveal that aminoglycoside resistance methyltransferases are capable to bind and modify late-stage immature 30S ribosomal subunits pointing to possibility that the resistance to aminoglycoside antibiotics is installed and established before the full maturation of ribosomal 30S subunit.

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甲基转移酶对未成熟小核糖体亚基的甲基化,赋予氨基糖苷抗性
氨基糖苷类抗生素是对临床治疗至关重要的广谱抗生素,但细菌耐药性的出现,特别是通过16S rRNA甲基转移酶,已经降低了它们的疗效。这些酶最初在天然氨基糖苷生产者中发现,通过甲基化16S rRNA中的核苷酸G1405和A1408,阻断抗生素与核糖体的结合,从而赋予耐药性。本研究研究了16S rRNA甲基转移酶KamB、NpmA、RmtA、RmtC和Sgm与缺乏RimM和YjeQ核糖体组装因子的大肠杆菌菌株未成熟30S核糖体亚基的结合亲和力和甲基化活性。采用微尺度热电泳法测定其与ΔyjeQ和ΔrimM菌株分离的成熟30S核糖体亚基和未成熟30S组装形式的结合亲和力,并通过体外拉下实验进一步验证相互作用。在体外甲基化实验和体内表达16S rRNA甲基转移酶的未成熟30S亚基细胞中提取的16S rRNA,通过引物延伸检测未成熟30S亚基的甲基化,结果显示在两种实验体系中目标核苷酸都成功甲基化。结果表明,氨基糖苷耐药甲基转移酶能够结合和修饰晚期未成熟的30S核糖体亚基,这表明对氨基糖苷类抗生素的耐药性可能在30S核糖体亚基完全成熟之前就已经安装和建立。
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来源期刊
Archives of biochemistry and biophysics
Archives of biochemistry and biophysics 生物-生化与分子生物学
CiteScore
7.40
自引率
0.00%
发文量
245
审稿时长
26 days
期刊介绍: Archives of Biochemistry and Biophysics publishes quality original articles and reviews in the developing areas of biochemistry and biophysics. Research Areas Include: • Enzyme and protein structure, function, regulation. Folding, turnover, and post-translational processing • Biological oxidations, free radical reactions, redox signaling, oxygenases, P450 reactions • Signal transduction, receptors, membrane transport, intracellular signals. Cellular and integrated metabolism.
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