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小球藻膜电位的测定。电生性糖转运的证据。

The determination of the membrane ptoential of Chlorella vulgaris. Evidence for electrogenic sugar transport.

作者信息

Komor E, Tanner W

出版信息

Eur J Biochem. 1976 Nov 1;70(1):197-204. doi: 10.1111/j.1432-1033.1976.tb10970.x.

Abstract

From data on the accumulation of tetraphenylphosphonium within Chlorella vulgaris cells, it can be estimated that these cells possess a membrane potential of --120 to --150 mV (inside negative). Under anaerobic conditions as well as in the presence of uncoupling agents the membrane potential drops to about -60 to -80 mV. Nystatin (50 mug/ml) abolishes it almost completely. Since it took more than 1 h before the tetraphenylphosphonium equilibrium was reached, this method could not be used to measure relatively fast transient changes in membrane potential. However, the rate of influx of tetraphenylphosphonium is also directly dependent on membrane potential and can be followed within minutes. Using this phenomenon as an indicator for membrane potential a brief transient depolarisation was detected after the addition of sugars taken up by Chlorella via the proton cotransport system. The depolarisation was absent from cells not induced for sugar uptake and induced cells did not show it with substances not transported, like mannitol. The maximal depolarisation observed amounted to about 70 mV; after 1 min, however, the membrane potential returned to a value about 25 mV less negative than the one before sugars was added. The results demonstrate that sugar uptake in Chlorella is electrogenic. The delta pH plus membrane potential measured for Chlorella completely cover the energy required to explain the 1600-fold accumulation of 6-deoxyglucose experimentally observed.

摘要

从小球藻细胞内四苯基鏻的积累数据可以估计,这些细胞的膜电位为-120至-150mV(内侧为负)。在厌氧条件下以及存在解偶联剂时,膜电位降至约-60至-80mV。制霉菌素(50μg/ml)几乎完全消除了膜电位。由于达到四苯基鏻平衡需要1个多小时,因此该方法不能用于测量膜电位相对快速的瞬时变化。然而,四苯基鏻的流入速率也直接取决于膜电位,并且可以在几分钟内跟踪。利用这一现象作为膜电位的指标,在添加通过质子共转运系统被小球藻吸收的糖类后,检测到短暂的瞬时去极化。未诱导糖吸收的细胞没有去极化现象,而诱导细胞对未运输的物质(如甘露醇)没有显示去极化。观察到的最大去极化约为70mV;然而,1分钟后,膜电位恢复到比添加糖类之前的电位负约25mV的值。结果表明,小球藻中的糖吸收是生电的。为小球藻测量的ΔpH加膜电位完全涵盖了解释实验观察到的6-脱氧葡萄糖1600倍积累所需的能量。

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