Trade-Offs Between Antibacterial Resistance and Fitness Cost in the Production of Metallo-ß-Lactamase by Enteric Bacteria Manifest as Sporadic Emergence of Carbapenem Resistance in a Clinical Setting
Trade-Offs Between Antibacterial Resistance and Fitness Cost in the Production of Metallo-ß-Lactamase by Enteric Bacteria Manifest as Sporadic Emergence of Carbapenem Resistance in a Clinical Setting
复制标题
肠道细菌生产金属-内酰胺酶的抗菌耐药性和健身成本之间的权衡表现为临床环境中碳青霉烯类耐药性的零星出现
DOI:
10.1101/2020.10.24.353581
复制
发表时间:
2020
期刊:
影响因子:
--
通讯作者:
Cheung C
中科院分区:
文献类型:
--
作者:
Cheung C
Meropenem is a clinically important antibacterial reserved for treatment of multiresistant infections. In meropenem-resistant bacteria of the familyEnterobacterales, NDM-1 is considerably more common than IMP-1, despite both metallo-β-lactamases (MBLs) hydrolyzing meropenem with almost identical kinetics. We show thatblaNDM-1consistently confers meropenem resistance in wild-typeEnterobacterales, butblaIMP-1does not. The reason is higherblaNDM-1expression because of its stronger promoter. However, the cost of meropenem resistance is reduced fitness ofblaNDM-1-positiveEnterobacterales. In parallel, from a clinical case, we identified multiple Enterobacter spp. isolates carrying a plasmid-encodedblaNDM-1having a modified promoter region. This modification lowered MBL production to a level associated with zero fitness cost, but, consequently, the isolates were not meropenem resistant. However, we identified a Klebsiella pneumoniae isolate from this same clinical case carrying the sameblaNDM-1plasmid. This isolate was meropenem resistant despite low-level NDM-1 production because of aramRmutation reducing envelope permeability. Overall, therefore, we show how the resistance/fitness trade-off for MBL carriage can be resolved. The result is sporadic emergence of meropenem resistance in a clinical setting.