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链丝菌素 F 是一种杀菌抗生素,对高度耐药的革兰氏阴性菌有效,它与 70S 核糖体的 30S 亚基相互作用。

Streptothricin F is a bactericidal antibiotic effective against highly drug-resistant gram-negative bacteria that interacts with the 30S subunit of the 70S ribosome.

机构信息

Department of Pharmacology, Case Western Reserve University School of Medicine, Cleveland, Ohio, United States of America.

Department of Pathology, Beth Israel Deaconess Medical Center, Boston, Massachusetts, United States of America.

出版信息

PLoS Biol. 2023 May 16;21(5):e3002091. doi: 10.1371/journal.pbio.3002091. eCollection 2023 May.

Abstract

The streptothricin natural product mixture (also known as nourseothricin) was discovered in the early 1940s, generating intense initial interest because of excellent gram-negative activity. Here, we establish the activity spectrum of nourseothricin and its main components, streptothricin F (S-F, 1 lysine) and streptothricin D (S-D, 3 lysines), purified to homogeneity, against highly drug-resistant, carbapenem-resistant Enterobacterales (CRE) and Acinetobacter baumannii. For CRE, the MIC50 and MIC90 for S-F and S-D were 2 and 4 μM, and 0.25 and 0.5 μM, respectively. S-F and nourseothricin showed rapid, bactericidal activity. S-F and S-D both showed approximately 40-fold greater selectivity for prokaryotic than eukaryotic ribosomes in in vitro translation assays. In vivo, delayed renal toxicity occurred at >10-fold higher doses of S-F compared with S-D. Substantial treatment effect of S-F in the murine thigh model was observed against the otherwise pandrug-resistant, NDM-1-expressing Klebsiella pneumoniae Nevada strain with minimal or no toxicity. Cryo-EM characterization of S-F bound to the A. baumannii 70S ribosome defines extensive hydrogen bonding of the S-F steptolidine moiety, as a guanine mimetic, to the 16S rRNA C1054 nucleobase (Escherichia coli numbering) in helix 34, and the carbamoylated gulosamine moiety of S-F with A1196, explaining the high-level resistance conferred by corresponding mutations at the residues identified in single rrn operon E. coli. Structural analysis suggests that S-F probes the A-decoding site, which potentially may account for its miscoding activity. Based on unique and promising activity, we suggest that the streptothricin scaffold deserves further preclinical exploration as a potential therapeutic for drug-resistant, gram-negative pathogens.

摘要

链丝菌素天然产物混合物(也称为诺尔丝菌素)于 20 世纪 40 年代早期被发现,由于对革兰氏阴性菌具有极好的活性,因此引起了强烈的初步兴趣。在这里,我们确定了诺尔丝菌素及其主要成分链丝菌素 F(S-F,1 个赖氨酸)和链丝菌素 D(S-D,3 个赖氨酸)的活性谱,它们被纯化至均一性,以对抗高度耐药、碳青霉烯耐药肠杆菌科(CRE)和鲍曼不动杆菌。对于 CRE,S-F 和 S-D 的 MIC50 和 MIC90 分别为 2 和 4 μM,0.25 和 0.5 μM。S-F 和诺尔丝菌素表现出快速的杀菌活性。S-F 和 S-D 在体外翻译实验中对原核核糖体的选择性分别比真核核糖体高约 40 倍。在体内,与 S-D 相比,S-F 的肾毒性延迟发生在高 10 倍以上的剂量。在 otherwise 泛耐药、表达 NDM-1 的 Klebsiella pneumoniae Nevada 株的小鼠大腿模型中,S-F 具有显著的治疗效果,且毒性最小或没有。S-F 与 A.baumannii 70S 核糖体结合的冷冻电镜表征定义了 S-F 链丝菌素部分作为鸟嘌呤类似物与 34 螺旋中的 16S rRNA C1054 核苷酸(大肠杆菌编号)以及 S-F 的氨甲酰化葡萄糖胺部分与 A1196 之间的广泛氢键,解释了在单个 rrn 操纵子 E.coli 中鉴定的残基所赋予的高水平耐药性。结构分析表明,S-F 探测 A 解码位点,这可能解释了其错配编码活性。基于独特和有前景的活性,我们建议进一步对链丝菌素支架进行临床前探索,作为治疗耐药革兰氏阴性病原体的潜在疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c8d/10187937/08016c20a80a/pbio.3002091.g001.jpg

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