Ellory J C, Willis J S
J Gen Physiol. 1982 Jun;79(6):1115-30. doi: 10.1085/jgp.79.6.1115.
Ouabain-sensitive K influx into ground squirrel and guinea pig red cells was measured at 5 and 37 degrees C as a function of external K and internal Na. In both species the external K affinity increases on cooling, being three- and fivefold higher in guinea pig and ground squirrel, respectively, at 5 than at 37 degrees C. Internal Na affinity also increased on cooling, by about the same extent. The effect of internal Na on ouabain-sensitive K influx in guinea pig cells fits a cubic Michaelis-Menten-type equation, but in ground squirrel cells this was true only at high [Na]i. There was still significant ouabain-sensitive K influx at low [Na]i. Ouabain-binding experiments indicated around 800 sites/cell for guinea pig and Columbian ground squirrel erythrocytes, and 280 sites/cell for thirteen-lined ground squirrel cells. There was no significant difference in ouabain bound per cell at 37 and 5 degrees C. Calculated turnover numbers for Columbian and thirteen-lined ground squirrel and guinea pig red cell sodium pumps at 37 degrees C were about equal, being 77-100 and 100-129 s-1, respectively. At 5 degrees C red cells from ground squirrels performed significantly better, the turnover numbers being 1.0-2.3 s-1 compared with 0.42-0.47 s-1 for erythrocytes of guinea pig. The results do not accord with a hypothesis that cold-sensitive Na pumps are blocked in one predominant form.
在5℃和37℃下,测定哇巴因敏感的钾离子流入地松鼠和豚鼠红细胞的情况,作为外部钾离子和内部钠离子的函数。在这两个物种中,冷却时外部钾离子亲和力增加,在5℃时,豚鼠和地松鼠的外部钾离子亲和力分别比37℃时高3倍和5倍。内部钠离子亲和力在冷却时也有类似程度的增加。内部钠离子对豚鼠细胞中哇巴因敏感的钾离子流入的影响符合三次米氏-门特型方程,但在地松鼠细胞中,只有在高[Na]i时才符合。在低[Na]i时仍有显著的哇巴因敏感的钾离子流入。哇巴因结合实验表明,豚鼠和哥伦比亚地松鼠红细胞每细胞约有800个位点,十三纹地松鼠细胞每细胞有280个位点。在37℃和5℃时,每细胞结合的哇巴因没有显著差异。计算得出,37℃时哥伦比亚地松鼠、十三纹地松鼠和豚鼠红细胞钠泵的周转数大致相等,分别为77 - 100和100 - 129 s-1。在5℃时,地松鼠的红细胞表现明显更好,周转数为1.0 - 2.3 s-1,而豚鼠红细胞为0.42 - 0.47 s-1。这些结果与冷敏感钠泵以一种主要形式被阻断的假设不一致。