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解决肠杆菌科细菌中的多粘菌素耐药和异质性耐药。

Resolving colistin resistance and heteroresistance in Enterobacter species.

机构信息

German Center for Infection Research (DZIF), Braunschweig, Germany.

Institute of Medical Microbiology, Justus Liebig University, Gießen, Germany.

出版信息

Nat Commun. 2023 Jan 10;14(1):140. doi: 10.1038/s41467-022-35717-0.

Abstract

Species within the Enterobacter cloacae complex (ECC) include globally important nosocomial pathogens. A three-year study of ECC in Germany identified Enterobacter xiangfangensis as the most common species (65.5%) detected, a result replicated by examining a global pool of 3246 isolates. Antibiotic resistance profiling revealed widespread resistance and heteroresistance to the antibiotic colistin and detected the mobile colistin resistance (mcr)-9 gene in 19.2% of all isolates. We show that resistance and heteroresistance properties depend on the chromosomal arnBCADTEF gene cassette whose products catalyze transfer of L-Ara4N to lipid A. Using comparative genomics, mutational analysis, and quantitative lipid A profiling we demonstrate that intrinsic lipid A modification levels are genospecies-dependent and governed by allelic variations in phoPQ and mgrB, that encode a two-component sensor-activator system and specific inhibitor peptide. By generating phoPQ chimeras and combining them with mgrB alleles, we show that interactions at the pH-sensing interface of the sensory histidine kinase phoQ dictate arnBCADTEF expression levels. To minimize therapeutic failures, we developed an assay that accurately detects colistin resistance levels for any ECC isolate.

摘要

肠杆菌科(Enterobacter cloacae complex,ECC)中的物种包括具有全球重要意义的医院获得性病原体。一项针对德国 ECC 的为期三年的研究发现,阴沟肠杆菌(Enterobacter xiangfangensis)是最常见的检测到的物种(65.5%),这一结果通过检查全球 3246 株分离株的样本得到了复制。抗生素耐药性分析显示,广泛存在对粘菌素的耐药性和异质性耐药性,并在所有分离株中检测到了 19.2%的移动性粘菌素耐药基因(mcr)-9。我们表明,耐药性和异质性耐药性特性取决于染色体 arnBCADTEF 基因盒,其产物催化 L-Ara4N 向脂质 A 的转移。通过比较基因组学、突变分析和定量脂质 A 分析,我们证明了固有脂质 A 修饰水平是基于种系的,由 phoPQ 和 mgrB 的等位基因变异决定,它们编码一个双组分传感器-激活器系统和特定的抑制剂肽。通过生成 phoPQ 嵌合体并将其与 mgrB 等位基因结合,我们表明,在感应组氨酸激酶 phoQ 的 pH 感应界面上的相互作用决定了 arnBCADTEF 的表达水平。为了尽量减少治疗失败,我们开发了一种能够准确检测任何 ECC 分离株的粘菌素耐药水平的检测方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/611d/9832134/b9f2eab033de/41467_2022_35717_Fig1_HTML.jpg

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