FRAZIER H S, SICULAR A, SOLOMON A K
J Gen Physiol. 1954 May 20;37(5):631-41. doi: 10.1085/jgp.37.5.631.
The inward transport of potassium by separated dog erythrocytes has been studied at concentrations of potassium in the medium from 2.9 to 25.0 m.eq./liter and at 38.0 and 33.0 degrees C. At the physiological concentration of external potassium (4.06 m.eq./liter medium), the inward potassium flux is 0.11 m.eq./liter cells hour and the glucose consumption is 2.0 mM/liter cells hour. The dependence of potassium influx on extracellular potassium concentration is given by the following equation, K influx (m.eq./liter cells hour) = 0.028 K - 0.003 in which K refers to the potassium concentration in the medium. In a single 93 hour experiment, 94 per cent of the intracellular potassium was exchanged at an apparently uniform rate. The average apparent activation energy for the process is 7,750 calories +/- 2,000 calories/mol and there is some indication that the apparent activation energy of inward K transport decreases with increasing external K concentration.
在38.0摄氏度和33.0摄氏度下,研究了分离的犬红细胞在培养基中钾浓度为2.9至25.0毫当量/升时钾的内向转运。在外部钾的生理浓度(培养基4.06毫当量/升)下,钾的内向通量为0.11毫当量/升细胞·小时,葡萄糖消耗为2.0毫摩尔/升细胞·小时。钾流入对细胞外钾浓度的依赖性由以下方程给出:钾流入(毫当量/升细胞·小时)=0.028[钾](环境)-0.003,其中[钾](环境)指培养基中的钾浓度。在一个为期93小时的单一实验中,94%的细胞内钾以明显均匀的速率进行了交换。该过程的平均表观活化能为7750卡±2000卡/摩尔,并且有迹象表明内向钾转运的表观活化能随外部钾浓度的增加而降低。