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分批培养的嗜热链球菌细胞中的电化学质子梯度和乳酸浓度梯度。

Electrochemical proton gradient and lactate concentration gradient in Streptococcus cremoris cells grown in batch culture.

作者信息

ten Brink B, Konings W N

出版信息

J Bacteriol. 1982 Nov;152(2):682-6. doi: 10.1128/jb.152.2.682-686.1982.

Abstract

The lactate concentration gradient and the components of the electrochemical proton gradient (delta micro H+) were determined in cells of Streptococcus cremoris growing in batch culture. The membrane potential (delta psi) and the pH gradient (delta pH) were determined from the accumulation of the lipophilic cation tetraphenylphosphonium and the weak acid benzoate, respectively. During growth the external pH decreased from 6.8 to 5.3 due to the production of lactate. Delta pH increased from 0 to -35 mV, inside alkaline (at an external pH of 5.7), and fell to zero directly after growth stopped. Delta psi was nearly constant at -90 mV during growth and also dissipated within 40 min after termination of growth. The internal lactate concentration decreased from 200 mM at the beginning of growth (at pH 6.8) to 30 mM at the end of growth (at pH 5.3); the external lactate concentration increased from 8 to 30 mM due to the fermentation of lactose. Thus, the lactate gradient decreased from 80 mV to zero as growth proceeded and the external pH decreased. From the data obtained on delta psi, delta pH, and the lactate concentration gradient, the H+/lactate stoichiometry (n) was calculated. The value of n varied with the external pH from 1.9 (at pH 6.8) to 0.9 (at pH values below 6). This implies that especially at high pH values the carrier-mediated efflux of lactate supplies a significant quantity of metabolic energy to S. cremoris cells. At pH 6.8 this energy gain was almost two ATP equivalents per molecule of lactose consumed if the H+/ATP stoichiometry equals 2. These results supply strong experimental evidence for the energy recycling model postulated by Michels et al.

摘要

测定了在分批培养中生长的嗜热链球菌细胞中的乳酸浓度梯度和电化学质子梯度(δμH⁺)的组成成分。膜电位(δψ)和pH梯度(δpH)分别通过亲脂性阳离子四苯基鏻和弱酸苯甲酸的积累来测定。在生长过程中,由于乳酸的产生,外部pH从6.8降至5.3。δpH从0增加到 -35 mV(内部呈碱性,外部pH为5.7时),生长停止后直接降至零。δψ在生长过程中几乎恒定在 -90 mV,生长终止后40分钟内也消散。内部乳酸浓度从生长开始时(pH 6.8)的200 mM降至生长结束时(pH 5.3)的30 mM;由于乳糖发酵,外部乳酸浓度从8 mM增加到30 mM。因此,随着生长进行和外部pH降低,乳酸梯度从80 mV降至零。根据获得的关于δψ、δpH和乳酸浓度梯度的数据,计算了H⁺/乳酸化学计量比(n)。n值随外部pH从1.9(pH 6.8时)变化到0.9(pH值低于6时)。这意味着特别是在高pH值时,载体介导的乳酸外排为嗜热链球菌细胞提供了大量的代谢能量。在pH 6.8时,如果H⁺/ATP化学计量比等于2,每消耗一分子乳糖,这种能量获得几乎相当于两个ATP当量。这些结果为Michels等人提出的能量循环模型提供了有力的实验证据。

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