Chambaut A M, Leray-Pecker F, Feldmann G, Hanoune J
J Gen Physiol. 1974 Jul;64(1):104-26. doi: 10.1085/jgp.64.1.104.
Plasma membranes from rat liver purified according to the procedure of Neville bind calcium ions by a concentration-dependent, saturable process with at least two classes of binding sites. The higher affinity sites bind 45 nmol calcium/mg membrane protein with a K(D) of 3 microM. Adrenalectomy increases the number of the higher affinity sites and the corresponding K(D). Plasma membranes exhibit a (Na(+)-K(+))-independent-Mg(2+)-ATPase activity which is not activated by calcium between 0.1 microM and 10 mM CaCl(2). Calcium can, with less efficiency, substitute for magnesium as a cofactor for the (Na(+)-K(+))-independent ATPase. Both Mg(2+)- and Ca(2+)-ATPase activities are identical with respect to pH dependence, nucleotide specificity and sensitivity to inhibitors. But when calcium is substituted for magnesium, there is no detectable membrane phosphorylation from [gamma-(32)P] ATP as it is found in the presence of magnesium. The existence of high affinity binding sites for calcium in liver plasma membranes is compatible with a regulatory role of this ion in membrane enzymic mechanisms or in hormone actions. Plasma membranes obtained by the procedure of Neville are devoid of any Ca(2+)-activated-Mg(2+)-ATPase activity indicating the absence of the classical energy-dependent calcium ion transport. These results would suggest that the overall calcium-extruding activity of the liver cell is mediated by a mechanism involving no direct ATP hydrolysis at the membrane level.
按照内维尔的方法纯化的大鼠肝脏质膜,通过浓度依赖性、可饱和过程结合钙离子,至少有两类结合位点。高亲和力位点以3 microM的解离常数(K(D))结合45 nmol钙/毫克膜蛋白。肾上腺切除术增加了高亲和力位点的数量和相应的K(D)。质膜表现出一种(Na(+)-K(+))非依赖性的Mg(2+)-ATP酶活性,在0.1 microM至10 mM CaCl(2)之间,该活性不受钙的激活。钙作为(Na(+)-K(+))非依赖性ATP酶的辅助因子时,替代镁的效率较低。Mg(2+)-ATP酶和Ca(2+)-ATP酶活性在pH依赖性、核苷酸特异性和对抑制剂的敏感性方面是相同的。但是当用钙替代镁时,与存在镁时不同,从[γ-(32)P]ATP中没有检测到膜磷酸化。肝脏质膜中钙的高亲和力结合位点的存在与该离子在膜酶机制或激素作用中的调节作用相一致。通过内维尔方法获得的质膜没有任何Ca(2+)-激活的Mg(2+)-ATP酶活性,这表明不存在经典的能量依赖性钙离子转运。这些结果表明,肝细胞的整体钙外排活性是由一种在膜水平不涉及直接ATP水解的机制介导的。