Multiple mechanisms mediate aztreonam-avibactam resistance in Klebsiella pneumoniae: Driven by KPC-2 and OmpK36 mutations.

IF 4.9 2区 医学 Q1 INFECTIOUS DISEASES
Xinli Xiang, Jingchun Kong, Jia Zhang, Xiaotuan Zhang, Changrui Qian, Tieli Zhou, Yao Sun
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引用次数: 0

Abstract

Aztreonam-avibactam (ATM-AVI) is a promising β-lactam/β-lactamase inhibitor combination with an antimicrobial spectrum covering serine carbapenemase- or metallo-β-lactamase-producing Enterobacterales. Although ATM-AVI has not been widely used in clinical practice, resistance to it in Escherichia coli has been widely reported. In this study, we investigated an ATM-AVI-resistant Klebsiella pneumoniae strain, designated as 1705R, derived from K. pneumoniae ATCC BAA-1705 by induction, with a minimal inhibitory concentration of 128 µg/mL. The 1705R strain contained two copies of the blaKPC-2 variant, which encodes for a K. pneumoniae carbapenemase (KPC) variant with a Ser109Pro substitution, as well as a premature termination in OmpK36 and OmpK35 porins. This KPC variant decreased susceptibility to ATM-AVI by four-fold and demonstrated a reduced affinity for ATM and AVI in molecular docking analysis. In porin-deficient strains harbouring this KPC variant, ATM-AVI susceptibility was further diminished, exhibiting a 32-fold reduction. Whole-genome sequencing revealed that the transposition of Tn4401 carrying blaKPC from the IncFIB/FIIK plasmid into the ColRNAI plasmid produced a second copy of blaKPC. Quantitative polymerase chain reaction revealed that the copy number of blaKPC and its carrier plasmid increased, which significantly up-regulated their mRNA expression. Overexpression of the AcrAB-TolC efflux pump may also be associated with high levels of ATM-AVI resistance. Furthermore, collateral susceptibility and costs of growth and biofilm formation developed after the acquisition of ATM-AVI resistance. This study demonstrates that multiple molecular mechanisms collectively contribute to ATM-AVI resistance in K. pneumoniae 1705R strain, which may represent a mode of resistance to ATM-AVI.

多种机制介导肺炎克雷伯菌对氨曲南-阿维巴坦的耐药:由KPC-2和OmpK36突变驱动
Aztreonam-avibactam (ATM-AVI)是一种很有前途的β-内酰胺/β-内酰胺酶抑制剂,其抗菌谱覆盖丝氨酸碳青霉烯酶或金属β-内酰胺酶产生的肠杆菌。虽然ATM-AVI尚未广泛应用于临床实践,但在大肠杆菌中对其耐药已被广泛报道。在本研究中,我们研究了一株从肺炎克雷伯菌ATCC BAA-1705中诱导获得的抗atm - avii肺炎克雷伯菌,命名为1705R,其最低抑制浓度为128 μg/mL。1705R菌株含有两个拷贝的blaKPC-2变体,该变体编码肺炎克雷伯菌碳青霉烯酶(KPC)变体,具有Ser109Pro替代,以及在OmpK36和OmpK35孔蛋白中过早终止。该KPC变异基因对ATM-AVI的敏感性降低了4倍,并在分子对接分析中显示对ATM和AVI的亲和力降低。在含有这种KPC变体的孔蛋白缺陷菌株中,ATM-AVI的易感性进一步降低,降低了32倍。全基因组测序显示,携带blaKPC的Tn4401从IncFIB/FIIK质粒转位到ColRNAI质粒中产生第二个blaKPC拷贝。定量聚合酶链反应显示,blaKPC及其载体质粒拷贝数增加,其mRNA表达量显著上调。acrabb - tolc外排泵的过表达也可能与高水平的ATM-AVI抗性有关。此外,获得ATM-AVI抗性后,生长和生物膜形成的附带易感性和成本也随之增加。本研究表明肺炎克雷伯菌1705R对ATM-AVI的耐药是多种分子机制共同作用的结果,可能代表了对ATM-AVI的一种耐药模式。
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来源期刊
CiteScore
21.60
自引率
0.90%
发文量
176
审稿时长
36 days
期刊介绍: The International Journal of Antimicrobial Agents is a peer-reviewed publication offering comprehensive and current reference information on the physical, pharmacological, in vitro, and clinical properties of individual antimicrobial agents, covering antiviral, antiparasitic, antibacterial, and antifungal agents. The journal not only communicates new trends and developments through authoritative review articles but also addresses the critical issue of antimicrobial resistance, both in hospital and community settings. Published content includes solicited reviews by leading experts and high-quality original research papers in the specified fields.
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