Malli R, Epstein W
Department of Molecular Genetics and Cell Biology, The University of Chicago, Chicago, Illinois 60637, USA.
J Bacteriol. 1998 Oct;180(19):5102-8. doi: 10.1128/JB.180.19.5102-5108.1998.
The kdpFABC operon of Escherichia coli encodes the four protein subunits of the Kdp K+ transport system. Kdp is expressed when growth is limited by the availability of K+. Expression of Kdp is dependent on the products of the adjacent kdpDE operon, which encodes a pair of two-component regulators. Studies with kdp-lac fusions led to the suggestion that change in turgor pressure acts as the signal to express Kdp (L. A. Laimins, D. B. Rhoads, and W. Epstein, Proc. Natl. Acad. Sci. USA 78:464-468, 1981). More recently, effects of compatible solutes, among others, have been interpreted as inconsistent with the turgor model (H. Asha and J. Gowrishankar, J. Bacteriol. 175:4528-4537, 1993). We re-examined the effects of compatible solutes and of medium pH on expression of Kdp in studies in which growth rate was also measured. In all cases, Kdp expression correlated with the K+ concentration when growth began to slow. Making the reasonable but currently untestable assumptions that the reduction in growth rate by K+ limitation is due to a reduction in turgor and that addition of betaine does not increase turgor, we concluded that all of the data on Kdp expression are consistent with control by turgor pressure.
大肠杆菌的kdpFABC操纵子编码Kdp钾离子转运系统的四个蛋白质亚基。当生长受到钾离子可用性的限制时,Kdp会表达。Kdp的表达依赖于相邻的kdpDE操纵子的产物,该操纵子编码一对双组分调节因子。对kdp - lac融合体的研究表明,膨压的变化作为表达Kdp的信号(L. A. 莱明斯、D. B. 罗兹和W. 爱泼斯坦,《美国国家科学院院刊》78:464 - 468, 1981)。最近,相容性溶质等的影响被解释为与膨压模型不一致(H. 阿莎和J. 高里尚卡尔,《细菌学杂志》175:4528 - 4537, 1993)。我们在同时测量生长速率的研究中重新审视了相容性溶质和培养基pH对Kdp表达的影响。在所有情况下,当生长开始减缓时,Kdp表达与钾离子浓度相关。基于钾离子限制导致生长速率降低是由于膨压降低以及添加甜菜碱不会增加膨压这一合理但目前无法验证的假设,我们得出结论,所有关于Kdp表达的数据都与膨压控制一致。