Fraser Katy R, O'Byrne Conor P
Department of Molecular and Cell Biology, Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, Scotland, UK.
FEMS Microbiol Lett. 2002 Jun 4;211(2):189-94. doi: 10.1111/j.1574-6968.2002.tb11223.x.
A deletion mutant of Listeria monocytogenes lacking OpuC, an ABC transporter responsible for the uptake of the compatible solute carnitine, was constructed and carnitine transport assays confirmed that carnitine transport was defective in this mutant. However, the mutant retained the ability to derive osmoprotection from carnitine, suggesting the presence of a second uptake system for this compatible solute. Measurement of intracellular carnitine pools during balanced growth confirmed that the opuC mutant accumulated high levels of carnitine. These pools were only achieved in the mutant when high levels (1 mM) of carnitine were present extracellularly. When a lower level (100 microM) was supplied in the medium the mutant failed to accumulate a substantial intracellular pool and failed to derive osmoprotection from carnitine. These data suggest the presence of a second low affinity carnitine uptake system in this osmotolerant pathogen.
构建了一株单核细胞增生李斯特菌缺失OpuC(一种负责摄取相容性溶质肉碱的ABC转运蛋白)的缺失突变体,肉碱转运试验证实该突变体中肉碱转运存在缺陷。然而,该突变体保留了从肉碱获得渗透保护的能力,这表明存在针对这种相容性溶质的第二种摄取系统。在平衡生长期间对细胞内肉碱池的测量证实,opuC突变体积累了高水平的肉碱。只有当细胞外存在高水平(1 mM)的肉碱时,该突变体才能达到这些肉碱池水平。当培养基中提供较低水平(100 microM)的肉碱时,该突变体无法积累大量的细胞内肉碱池,也无法从肉碱获得渗透保护。这些数据表明,在这种耐渗透压病原体中存在第二种低亲和力肉碱摄取系统。