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Regulation of the Glutamate-Glutamine Transport System by Intracellular pH in Streptococcus lactis

机译:乳酸链球菌细胞内pH对谷氨酸-谷氨酰胺转运系统的调节。

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摘要

Various methods of manipulation of the intracellular pH in Streptococcus lactis result in a unique relationship between the rate of glutamate and glutamine transport and the cytoplasmic pH. The initial rate of glutamate uptake by S. lactis cells increases more than 30-fold when the intracellular pH is raised from 6.0 to 7.4. A further increase of the cytoplasmic pH to 8.0 was without effect on transport. The different levels of inhibition of glutamate and glutamine transport at various external pH values by uncouplers and ionophores, which dissipate the proton motive force, can be explained by the effects exerted on the intracellular pH. The dependence of glutamate transport on the accumulation of potassium ions in potassium-filled and -depleted cells is caused by the regulation of intracellular pH by potassium movement.
机译:乳酸链球菌细胞内pH值的各种处理方法导致谷氨酸和谷氨酰胺转运速率与细胞质pH值之间存在独特的关系。当细胞内pH从6.0提高到7.4时,乳酸链球菌细胞吸收谷氨酸的初始速率增加了30倍以上。细胞质pH进一步增加至8.0对转运没有影响。解偶联剂和离子载体在不同的外部pH值下对谷氨酸和谷氨酰胺转运的不同程度的抑制会消散质子动力,这可以通过对细胞内pH值的影响来解释。谷氨酸转运对充满钾和耗尽钾的细胞中钾离子积累的依赖性是由钾运动调节细胞内pH引起的。

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