Cooksey D A
Department of Plant Pathology, University of California, Riverside 92521-0122.
Mol Microbiol. 1993 Jan;7(1):1-5. doi: 10.1111/j.1365-2958.1993.tb01091.x.
Copper ions are essential for bacteria but can cause a number of toxic cellular effects if levels of free ions are not controlled. Investigations of copper-resistant bacteria have revealed several mechanisms, mostly plasmid-determined, that prevent cellular uptake of high levels of free copper ions. However, these studies have also revealed that bacteria apparently have efficient chromosomally encoded systems for uptake and management of trace levels of copper. This review will explore the relationship of copper uptake systems to resistance mechanisms and the possibility that copper resistance has evolved directly through modification of chromosomal copper uptake genes.
铜离子对细菌至关重要,但如果游离离子水平不受控制,可能会导致许多细胞毒性效应。对耐铜细菌的研究揭示了几种机制,大多由质粒决定,可防止细胞摄取高水平的游离铜离子。然而,这些研究也表明,细菌显然拥有高效的染色体编码系统来摄取和管理痕量水平的铜。本综述将探讨铜摄取系统与抗性机制之间的关系,以及铜抗性是否直接通过染色体铜摄取基因的修饰而进化的可能性。