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铊在细菌和酵母中的毒性与积累

Toxicity and accumulation of thallium in bacteria and yeast.

作者信息

Norris P, Man W K, Hughes M N, Kelly D P

出版信息

Arch Microbiol. 1976 Nov 2;110(23):279-86. doi: 10.1007/BF00690239.

Abstract

Thallium sulphate inhibited microbial growth, with Bacillus megaterium KM more sensitive to the metal than Saccharomyces cerevisiae and Escherichia coli. Inhibition of B. megaterium KM and S. cerevisiae, but not of E. coli, was alleviated by increasing the potassium concentration of the medium; inhibition of respiration of S. cerevisiae, but not of E. coli, was similarly alleviated. Thallium was rapidly bound, presumably to cell surfaces, by S. cerevisiae and E. coli, and was progressively accumulated by energy-dependent transport systems (probably concerned primarily with potassium uptake) with both organisms. Thallium uptake kinetics suggested more than one transport system operated in yeast, possibly reflecting a multiplicity of potassium transport systems. Apparent Km and Ki values for competitive inhibition of thallium uptake by potassium indicated S. cerevisiae to have a higher affinity for thallium uptake than for potassium, while E. coli had a transport system with a higher affinity for potassium than for thallium. The likely systems for thallium transport are discussed. A mutant of E. coli with tenfold decreased sensitivity to thallium was isolated and apparently effected surface binding of thallium in amounts equivalent to the wild type organism, but showed no subsequent uptake and accumulation of the metal from buffer, even though it was able to accumulate potassium to normal intracellular concentrations during growth.

摘要

硫酸铊抑制微生物生长,巨大芽孢杆菌KM比酿酒酵母和大肠杆菌对这种金属更敏感。增加培养基中的钾浓度可减轻对巨大芽孢杆菌KM和酿酒酵母的抑制作用,但对大肠杆菌无此作用;同样,增加钾浓度可减轻对酿酒酵母呼吸的抑制作用,但对大肠杆菌无此作用。铊能迅速被酿酒酵母和大肠杆菌结合,推测是结合到细胞表面,并且这两种微生物通过能量依赖的转运系统(可能主要与钾的摄取有关)逐渐积累铊。铊的摄取动力学表明酵母中存在不止一种转运系统,这可能反映了钾转运系统的多样性。钾对铊摄取的竞争性抑制的表观Km和Ki值表明,酿酒酵母对铊摄取的亲和力高于对钾的亲和力,而大肠杆菌的一种转运系统对钾的亲和力高于对铊的亲和力。文中讨论了可能的铊转运系统。分离出一株对铊敏感性降低十倍的大肠杆菌突变体,该突变体显然能像野生型菌株一样在表面结合等量的铊,但即使在生长过程中能够将钾积累到正常的细胞内浓度,也未表现出随后从缓冲液中摄取和积累金属的现象。

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