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缬氨霉素对细菌细胞离子转运及细菌生长的影响。

Effect of valinomycin on ion transport in bacterial cells and on bacterial growth.

作者信息

Ryabova I D, Gorneva G A, Ovchinnikov Y A

出版信息

Biochim Biophys Acta. 1975 Aug 5;401(1):109-18. doi: 10.1016/0005-2736(75)90345-4.

Abstract

The antimicrobial action of valinomycin relative to the K+ and Na+ contents of the medium has been investigated in several species of bacteria, particularly in Streptococcus faecalis, which effects energy-linked transport exclusively via degradation of glycolytic ATP, Micrococcus lysodeikticus, effecting active ion transport by respiration and Staphylococcus aureus, the energy-dependent ion transport of which is due to both glycolytic ATP degradation and respiration. It was demonstrated that valinomycin does not act on K+ transport in the glycolysing cells in the same manner as it does on respiring cells under similar conditions. Addition of valinomycin to respiring cells leads to an increase in K+ influx against the concentrational gradient in both growing and resting cells. In contrast to this, antibiotic-treated glycolysing cells experience passive K+ outflow down the concentrational gradient. It was thus concluded that the electrical potential cannot be the driving force for the energy-linked K+ transport in glycolysing cells.

摘要

已在几种细菌中研究了缬氨霉素相对于培养基中钾离子(K⁺)和钠离子(Na⁺)含量的抗菌作用,特别是在粪链球菌中,其仅通过糖酵解ATP的降解来实现能量偶联转运;在溶壁微球菌中,通过呼吸作用实现主动离子转运;在金黄色葡萄球菌中,其能量依赖性离子转运是由于糖酵解ATP降解和呼吸作用两者。结果表明,缬氨霉素在糖酵解细胞中对K⁺转运的作用方式与在类似条件下对呼吸细胞的作用方式不同。向呼吸细胞中添加缬氨霉素会导致生长细胞和静止细胞中K⁺逆浓度梯度流入增加。与此相反,经抗生素处理的糖酵解细胞会经历K⁺顺浓度梯度的被动流出。因此得出结论,电势不可能是糖酵解细胞中能量偶联K⁺转运的驱动力。

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