Takuwa Y, Takeuchi Y, Ogata E
Clin Sci (Lond). 1986 Sep;71(3):307-12. doi: 10.1042/cs0710307.
Cultured monkey kidney cells (JTC-12) have a Na+-dependent phosphate (Pi) transport system with characteristics similar to that of the renal proximal tubule. Na+-dependent Pi uptake in JTC-12 cells is affected by Pi concentrations in the culture medium. In this investigation, further characterization of this phenomenon was carried out. Lowering the concentration of extracellular Pi (3.0 mmol/l to 0.3 mmol/l) induced an increase in Na+-dependent Pi uptake compared with that in control cells maintained in 3.0 mmol/l Pi, whereas Na+-dependent transport of hexose and amino acid was not altered. This response was first evident at 4 h after the extracellular Pi concentration was reduced and slowly developed over the subsequent 24 h. Kinetic analysis showed an increase in the Vmax without a change in the apparent Km for Pi in cells cultured in the low Pi concentration compared with control cells. The response of Pi uptake was only partially prevented by cycloheximide, suggesting that both protein synthesis-dependent and -independent mechanisms are involved in the development of the response. Insulin, which has a stimulatory effect on Pi uptake in JTC-12 cells, did not affect this response. These data indicate that JTC-12 cells respond to changes in extracellular Pi concentration by changing the Na+-dependent Pi uptake system. This response has a number of properties typical of the phenomenon of adaptation of renal Pi transport in vivo to dietary phosphorus load.
培养的猴肾细胞(JTC - 12)具有一种钠依赖性磷酸盐(Pi)转运系统,其特性与肾近端小管的相似。JTC - 12细胞中钠依赖性Pi摄取受培养基中Pi浓度的影响。在本研究中,对这一现象进行了进一步的表征。将细胞外Pi浓度从3.0 mmol/L降至0.3 mmol/L,与维持在3.0 mmol/L Pi的对照细胞相比,钠依赖性Pi摄取增加,而己糖和氨基酸的钠依赖性转运未改变。这种反应在细胞外Pi浓度降低后4小时首次明显,并在随后的24小时内缓慢发展。动力学分析表明,与对照细胞相比,在低Pi浓度下培养的细胞中Pi的Vmax增加,而表观Km不变。Pi摄取的反应仅部分被环己酰亚胺抑制,这表明蛋白质合成依赖性和非依赖性机制均参与了该反应的发展。对JTC - 12细胞中Pi摄取有刺激作用的胰岛素并未影响该反应。这些数据表明,JTC - 12细胞通过改变钠依赖性Pi摄取系统对细胞外Pi浓度的变化做出反应。这种反应具有体内肾Pi转运对饮食磷负荷适应现象的许多典型特性。