Krämer R, Lambert C
Institut für Biotechnologie I des Forschungszentrums Jülich, Federal Republic of Germany.
Eur J Biochem. 1990 Dec 27;194(3):937-44. doi: 10.1111/j.1432-1033.1990.tb19489.x.
The inducible glutamate uptake system in Corynebacterium glutamicum (Krämer, R., Lambert, C., Hoischen, C. & Ebbighausen, H., preceding paper in this journal) was characterized with respect to its mechanism and energy coupling. All possible secondary active uptake mechanisms can be excluded. Glutamate transport is not coupled to the translocation of H+, Na+ or K+ ions. Although changes in membrane potential and uptake activity cannot completely be separated, no correlation between these two parameters is observed. The uptake of glutamate resembles a primary active, ATP-dependent transport mechanism in several respects. (a) The substrate affinity is very high (1.3 microM). (b) Accumulation of glutamate reaches values of greater than 2.10(5), at least as high as those reported for binding-protein-dependent systems in Gram-negative bacteria. (c) The uptake is unidirectional. Even after complete deenergization, the accumulation ratio was not significantly reduced. (d) The rate of glutamate uptake is directly correlated to the cytosolic ATP content and also to the ATP/ADP ratio. This is shown by varying internal ATP by different procedures applying inhibitors (NaCN, dicyclohexyl carbodiimide), uncouplers (carbonyl m-chlorophenylhydrazone), ionophores (valinomycin), and even by shifting the cells to anaerobiosis. Uptake is not promoted by cytosolic ATP levels below 1.5 mM, the maximum uptake rate is reached at 4-5 mM ATP.
对谷氨酸棒杆菌中可诱导的谷氨酸摄取系统(Krämer, R., Lambert, C., Hoischen, C. 及 Ebbighausen, H.,本刊上一篇论文)的机制及能量偶联进行了表征。所有可能的次级主动摄取机制均被排除。谷氨酸转运不与H⁺、Na⁺或K⁺离子的转运偶联。尽管膜电位变化和摄取活性变化不能完全分离,但未观察到这两个参数之间的相关性。谷氨酸摄取在几个方面类似于初级主动的、ATP依赖的转运机制。(a) 底物亲和力非常高(1.3 μM)。(b) 谷氨酸的积累值达到大于2.10⁵,至少与革兰氏阴性菌中报道的依赖结合蛋白的系统一样高。(c) 摄取是单向的。即使在完全去能后,积累比也没有显著降低。(d) 谷氨酸摄取速率与胞质ATP含量以及ATP/ADP比值直接相关。通过应用抑制剂(NaCN、二环己基碳二亚胺)、解偶联剂(羰基间氯苯腙)、离子载体(缬氨霉素)的不同程序改变细胞内ATP,甚至通过将细胞转移至厌氧环境,均可证明这一点。胞质ATP水平低于1.5 mM时摄取不被促进,在ATP为4 - 5 mM时达到最大摄取速率。