McCans J L, Lindenmayer G E, Pitts B J, Ray M V, Raynor B D, Butler V P, Schwartz A
J Biol Chem. 1975 Sep 25;250(18):7257-65.
Antisera to purified (Na+, K+)-ATPase raised in rabbits and in sheep were purified by an absorption procedure employing purified canine kidney (Na+, K+)-ATPase. The antibodies were fractionated into two components, one which inhibited catalytic activity, and a second which inhibited ouabain binding. Under certain conditions, the fraction that inhibited ouabain binding also inhibited catalytic activity, and the effectiveness of both was dependent to some extent on the ligands present in the incubation medium. Thus, both antibody fractions appeared to detect conformations of the enzyme that depended upon ligand-induced perturbations. When the antibody raised against catalytic activity was incubated with erythrocyte membrane fragments, an inhibition of the (Na+, K+)-ATPase occurred, but only minimal or no effect on potassium influx or on digoxin-induced inhibition of potassium flux in intact erythrocytes was noted. In a similar experiment, however, the antibody against ouabain binding significantly inhibited potassium influx, suggesting specificity in terms of the macromolecular surfaces of the pump which were exposed to the external medium. We concluded that there may be organ and species differences among (Na+, K+)-ATPase preparations. Antibodies prepared in rabbits and sheep were fractionated by absorption to dog brain enzyme. Both the antibody fraction which bound to the brain enzyme and that which did not bind inhibited the dog kidney (Na+, K+)-ATPase, but only the former inhibited dog brain (Na+, K+)-ATPase. When the two fractions were recombined, inhibition was restored to the extent of the unfractionated antibody.
用纯化的犬肾(Na +,K +)-ATP酶通过吸收法纯化在兔和羊体内产生的针对纯化的(Na +,K +)-ATP酶的抗血清。抗体被分离成两个组分,一个抑制催化活性,另一个抑制哇巴因结合。在某些条件下,抑制哇巴因结合的组分也抑制催化活性,并且两者的有效性在一定程度上取决于孵育介质中存在的配体。因此,两个抗体组分似乎都检测到了依赖于配体诱导扰动的酶构象。当针对催化活性产生的抗体与红细胞膜片段一起孵育时,(Na +,K +)-ATP酶受到抑制,但对完整红细胞中的钾流入或地高辛诱导的钾流抑制仅产生最小影响或无影响。然而,在类似的实验中,针对哇巴因结合的抗体显著抑制钾流入,这表明在泵暴露于外部介质的大分子表面方面具有特异性。我们得出结论,(Na +,K +)-ATP酶制剂之间可能存在器官和物种差异。在兔和羊体内制备的抗体通过与狗脑酶吸收进行分离。与脑酶结合的抗体组分和未结合的抗体组分均抑制狗肾(Na +,K +)-ATP酶,但只有前者抑制狗脑(Na +,K +)-ATP酶。当将这两个组分重新组合时,抑制作用恢复到未分离抗体的程度。