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The ABC-Type Multidrug Resistance Transporter LmrCD Is Responsible for an Extrusion-Based Mechanism of Bile Acid Resistance in Lactococcus lactis

机译:ABC型多药耐药转运蛋白LmrCD负责乳酸乳球菌的基于挤压的胆汁酸抗性机制

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Upon prolonged exposure to cholate and other toxic compounds, Lactococcus lactis develops a multidrug resistance phenotype that has been attributed to an elevated expression of the heterodimeric ABC-type multidrug transporter LmrCD. To investigate the molecular basis of bile acid resistance in L. lactis and to evaluate the contribution of efflux-based mechanisms in this process, the drug-sensitive L. lactis NZ9000 ΔlmrCD strain was challenged with cholate. A resistant strain was obtained that, compared to the parental strain, showed (i) significantly improved resistance toward several bile acids but not to drugs, (ii) morphological changes, and (iii) an altered susceptibility to antimicrobial peptides. Transcriptome and transport analyses suggest that the acquired resistance is unrelated to elevated transport activity but, instead, results from a multitude of stress responses, changes to the cell envelope, and metabolic changes. In contrast, wild-type cells induce the expression of lmrCD upon exposure to cholate, whereupon the cholate is actively extruded from the cells. Together, these data suggest a central role for an efflux-based mechanism in bile acid resistance and implicate LmrCD as the main system responsible in L. lactis.
机译:长时间暴露于胆酸盐和其他有毒化合物后,乳酸乳球菌会形成多药耐药表型,这归因于异二聚ABC型多药转运蛋白LmrCD的表达升高。调查 L中胆汁酸抗性的分子基础。乳酸,并评估基于药物外排的机理,即对药物敏感的 L。胆酸盐攻击乳酸菌 NZ9000Δ lmrCD 。与亲本菌株相比,获得了一种耐药菌株,该菌株显示(i)对几种胆汁酸的抗药性显着提高,但对药物的抗药性却大大提高,(ii)形态变化,以及(iii)对抗菌肽的敏感性变化。转录组和转运分析表明,获得的抗性与转运活性升高无关,而是由多种应激反应,细胞包膜变化和代谢变化导致。相反,野生型细胞在暴露于胆酸盐后诱导 lmrCD 的表达,于是胆酸盐被积极地从细胞中挤出。总之,这些数据表明了基于外排的机制在胆汁酸抵抗中的重要作用,并暗示LmrCD是负责Lem的主要系统。乳酸

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