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砷酸盐对大肠杆菌中无机磷酸盐转运的影响。

Effect of arsenate on inorganic phosphate transport in Escherichia coli.

作者信息

Willsky G R, Malamy M H

出版信息

J Bacteriol. 1980 Oct;144(1):366-74. doi: 10.1128/jb.144.1.366-374.1980.

Abstract

The effect of arsenate on strains dependent on the two major inorganic phosphate (Pi) transport systems in Escherichia coli was examined in cells grown in 1 mM phosphate medium. The development of arsenate-resistant Pi uptake in a strain dependent upon the Pst (phosphate specific transport) system was examined. The growth rate of Pst-dependent cells in arsenate-containing medium was a function of the arsenate-to-Pi ratio. Growth in arsenate-containing medium was not due to detoxification of the arsenate. Kinetic studies revealed that cells grown with a 10-fold excess of arsenate to Pi have almost a twofold increase in capacity (Vmax) for Pi, but maintained the same affinity (Km). Pi accumulation in the Pst-dependent strain was still sensitive to changes in the arsenate-to-Pi ratio, and a Ki (arsenate) for Pi transport of 39 microM arsenate was determined. The Pst-dependent strain did not accumulate radioactive arsenate, and showed only a transient decrease in intracellular adenosine triphosphate levels after arsenate was added to the medium. The Pi transport-dependent strain ceased growth in arsenate-containing media. This strain accumulated 74As-arsenate, and intracellular adenosine triphosphate pools were almost completely depleted after the addition of arsenate to the medium. Arsenate accumulation required a metabolizable energy source and was inhibited by N-ethylmaleimide. Previously accumulated arsenate could exchange with arsenate or Pi in the medium.

摘要

在以1 mM磷酸盐培养基培养的细胞中,研究了砷酸盐对依赖大肠杆菌中两种主要无机磷酸盐(Pi)转运系统的菌株的影响。研究了依赖Pst(磷酸盐特异性转运)系统的菌株中抗砷酸盐Pi摄取的发展情况。依赖Pst的细胞在含砷酸盐培养基中的生长速率是砷酸盐与Pi比例的函数。在含砷酸盐培养基中的生长并非由于砷酸盐的解毒作用。动力学研究表明,在砷酸盐与Pi比例为10倍过量的条件下生长的细胞,其Pi摄取能力(Vmax)几乎增加了两倍,但亲和力(Km)保持不变。依赖Pst的菌株中Pi的积累仍对砷酸盐与Pi比例的变化敏感,并且确定了Pi转运的砷酸盐抑制常数(Ki)为39 microM砷酸盐。依赖Pst的菌株不积累放射性砷酸盐,并且在向培养基中添加砷酸盐后,细胞内三磷酸腺苷水平仅出现短暂下降。依赖Pi转运的菌株在含砷酸盐的培养基中停止生长。该菌株积累了74As-砷酸盐,并且在向培养基中添加砷酸盐后,细胞内三磷酸腺苷池几乎完全耗尽。砷酸盐的积累需要可代谢的能量来源,并且受到N-乙基马来酰亚胺的抑制。先前积累的砷酸盐可以与培养基中的砷酸盐或Pi进行交换。

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