Halm D R, Dawson D C
J Gen Physiol. 1983 Sep;82(3):315-29.
The current generated by electrogenic sodium-potassium exchange at the basolateral membrane of the turtle colon can be measured directly in tissues that have been treated with serosal barium (to block the basolateral potassium conductance) and mucosal amphotericin B (to reduce the cation selectivity of the apical membrane). We studied the activation of this pump current by mucosal sodium and serosal potassium, rubidium, cesium, and ammonium. The kinetics of sodium activation were consistent with binding to three independent sites on the cytoplasmic side of the pump. The pump was not activated by cellular lithium ions. The kinetics of serosal cation activation were consistent with binding to two independent sites with the selectivity Rb > K > Cs > NH4. The properties and kinetics of the basolateral Na/K pump in the turtle colon are at least qualitatively similar to those ofthe well-characterized Na/K-ATPase of the human red blood cell .
在经浆膜钡处理(以阻断浆膜钾电导)和黏膜两性霉素B处理(以降低顶端膜的阳离子选择性)的组织中,可以直接测量龟结肠基底外侧膜上由电生性钠钾交换产生的电流。我们研究了黏膜钠以及浆膜钾、铷、铯和铵对这种泵电流的激活作用。钠激活的动力学与泵细胞质侧三个独立位点的结合一致。该泵未被细胞内锂离子激活。浆膜阳离子激活的动力学与两个独立位点的结合一致,选择性为Rb>K>Cs>NH4。龟结肠基底外侧钠钾泵的特性和动力学至少在质量上与人红细胞中特征明确的钠钾ATP酶相似。