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海洋假单胞菌细胞的钾转运以及细胞内钾浓度与氨基酸摄取之间的关系。

Potassium transport and the relationship between intracellular potassium concentration and amino acid uptake by cells of a marine pseudomonad.

作者信息

Thompson J, MacLeod R A

出版信息

J Bacteriol. 1974 Nov;120(2):598-603. doi: 10.1128/jb.120.2.598-603.1974.

Abstract

Transport of K(+) by K(+)-depleted cells of marine pseudomonad B-16 (ATCC 19855) exhibited saturation kinetics. Rb(+) inhibited both K(+) transport and the K(+)-dependent transport of alpha-aminoisobutyric acid (AIB) into K(+)-depleted cells of the organism in proportion to the concentration of Rb(+) in the suspending medium. Inhibition of the K(+)-dependent uptake of AIB into K(+)-depleted cells by Rb(+) could be overcome by increasing the concentration of K(+) in the medium. When AIB and K(+) were added simultaneously to a suspension of K(+)-depleted cells, the uptake of K(+) occurred immediately and rapidly, whereas the accumulation of AIB occurred only after a lag. The initial uptake rate of AIB was directly proportional to the intracellular K(+) concentration. The intracellular concentration of K(+) and AIB at their steady-state levels increased to a maximum as the Na(+) concentration in the suspending medium was increased. At Na(+) concentrations between 0.2 and 0.3 M, the molar ratio of K(+) to AIB at their intracellular steady-state concentrations was constant at 1.6. At external Na(+) concentrations less than 0.2 M, the cells maintained a relatively higher K(+) intracellular steady-state level than AIB.

摘要

海洋假单胞菌B - 16(ATCC 19855)的钾离子耗尽细胞对钾离子的转运呈现出饱和动力学。铷离子抑制钾离子转运以及α - 氨基异丁酸(AIB)依赖钾离子进入该生物体的钾离子耗尽细胞,其抑制程度与悬浮培养基中铷离子的浓度成比例。通过增加培养基中钾离子的浓度,可以克服铷离子对钾离子耗尽细胞中AIB依赖钾离子摄取的抑制作用。当将AIB和钾离子同时添加到钾离子耗尽细胞的悬浮液中时,钾离子的摄取立即快速发生,而AIB的积累仅在滞后一段时间后才发生。AIB的初始摄取速率与细胞内钾离子浓度成正比。随着悬浮培养基中钠离子浓度的增加,钾离子和AIB在其稳态水平下的细胞内浓度增加到最大值。在钠离子浓度介于0.2和0.3 M之间时,钾离子与AIB在其细胞内稳态浓度下的摩尔比恒定为1.6。在外部钠离子浓度小于0.2 M时,细胞维持的细胞内钾离子稳态水平相对高于AIB。

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