Soltoff S P, Mandel L J
J Gen Physiol. 1984 Oct;84(4):601-22. doi: 10.1085/jgp.84.4.601.
Various aspects of the interrelationship between ion transport and cellular metabolism were investigated using a suspension of rabbit cortical tubules that were mainly proximal in nature. Using the intact tubules, the compartmentation of K within the renal cell was studied by performing 42K uptake studies. The oxygen consumption (QO2) of the tubules was measured under similar conditions, as well as when the Na pump was stimulated by increasing Na+ entry with nystatin. In addition, the state 3 rate of respiration was measured when the mitochondria of digitonin-permeabilized tubules were stimulated by ADP. At 37 and 25 degrees C, a single-compartmental uptake of 42K was observed, which suggests that extracellular K+ communicates with a single compartment within the renal cell. Between 37 and 15 degrees C, the ouabain-sensitive QO2 and the initial 42K uptake rate were parallel in an Arrhenius-type plot, which indicated that active ion transport and oxidative phosphorylation remain tightly coupled within this temperature range. At all temperatures between 37 and 15 degrees C, nystatin stimulated the QO2, which demonstrates that the entry of Na+ into the renal cells was rate limiting for active Na+ transport throughout this temperature range. Between 37 and 20 degrees C, the nystatin-stimulated QO2 was nearly equal to the state 3 rate of respiration, which suggests that active ion transport may be limited by ATP availability under these conditions. At 15 degrees C, nystatin addition stimulated the QO2 well below the state 3 respiratory rate.
利用主要为近端性质的兔皮质肾小管悬浮液,对离子转运与细胞代谢之间相互关系的各个方面进行了研究。使用完整的肾小管,通过进行⁴²K摄取研究来研究肾细胞内K的区室化。在相似条件下,以及当用制霉菌素增加Na⁺进入量刺激Na泵时,测量肾小管的耗氧量(QO₂)。此外,当用ADP刺激洋地黄皂苷通透的肾小管的线粒体时,测量呼吸的状态3速率。在37℃和25℃时,观察到⁴²K的单室摄取,这表明细胞外K⁺与肾细胞内的一个单室进行交流。在37℃和15℃之间,哇巴因敏感的QO₂和初始⁴²K摄取速率在阿累尼乌斯型图中呈平行关系,这表明在该温度范围内,主动离子转运和氧化磷酸化仍紧密偶联。在37℃和15℃之间的所有温度下,制霉菌素刺激QO₂,这表明在整个该温度范围内,Na⁺进入肾细胞是主动Na⁺转运的限速因素。在37℃和20℃之间,制霉菌素刺激的QO₂几乎等于呼吸的状态3速率,这表明在这些条件下,主动离子转运可能受ATP可用性的限制。在15℃时,添加制霉菌素刺激的QO₂远低于状态3呼吸速率。