Törnquist K, Alinen S
Endocrine Research Laboratory, University of Helsinki, Minerva Foundation Institute for Medical Research, Finland.
Biochim Biophys Acta. 1992 Apr 29;1106(1):221-6. doi: 10.1016/0005-2736(92)90242-e.
Na+/H+ exchange activity was investigated in cultured rat thyroid follicular FRTL-5 cells using the pH sensitive dye 2',7'-bis(carboxyethyl)-5(6)-carboxyfluorescein (BCECF). Basal intracellular pH (pHi) was 7.13 +/- 0.10 in cells incubated in Hepes-buffered saline solution. The intracellular buffering capacity beta i was determined using the NH4Cl-pulse method, yielding a beta i value of 85 +/- 12 mM/pH unit. The relationship between extracellular Na+ and the initial rate of alkalinization of acid-loaded cells showed simple saturation kinetics, with an apparent Km value of 44 +/- 26 mM, and an Vmax value of 0.3 +/- 0.01 pH unit/min. The agonist-induced activation of Na+/H+ exchange was investigated in cells acidified with nigericin. Addition of 12-O-tetradecanoylphorbol 13-acetate (TPA) or ATP induced rapid cytosolic alkalinization in acid-loaded cells. The action of both TPA and ATP was abolished by preincubating the cells with 100 microM amiloride, by substituting extracellular Na+ with equimolar concentrations of choline+, and by pretreating the cells with TPA for 24 h. Chelating extracellular Ca2+, or depleating intracellular Ca2+ pools did not affect the ATP-induced alkalinization. The results indicate, that FRTL-5 cells have a functional Na+/H+ exchange mechanism. Furthermore, stimulation of protein kinase C activity is of importance in activating the antiport.
使用pH敏感染料2',7'-双(羧乙基)-5(6)-羧基荧光素(BCECF),在培养的大鼠甲状腺滤泡FRTL-5细胞中研究了Na+/H+交换活性。在Hepes缓冲盐溶液中孵育的细胞中,基础细胞内pH(pHi)为7.13±0.10。使用NH4Cl脉冲法测定细胞内缓冲能力βi,得出βi值为85±12 mM/pH单位。细胞外Na+与酸负载细胞的初始碱化速率之间的关系显示出简单的饱和动力学,表观Km值为44±26 mM,Vmax值为0.3±0.01 pH单位/分钟。在用尼日利亚菌素酸化的细胞中研究了激动剂诱导的Na+/H+交换激活。添加12-O-十四烷酰佛波醇13-乙酸酯(TPA)或ATP可诱导酸负载细胞中的快速胞质碱化。通过用100μM氨氯吡咪预孵育细胞、用等摩尔浓度的胆碱+替代细胞外Na+以及用TPA预处理细胞24小时,TPA和ATP的作用均被消除。螯合细胞外Ca2+或耗尽细胞内Ca2+池不影响ATP诱导的碱化。结果表明,FRTL-5细胞具有功能性Na+/H+交换机制。此外,蛋白激酶C活性的刺激在激活反向转运中起重要作用。