Koepsell H
J Membr Biol. 1979 Mar 28;45(1-2):1-20. doi: 10.1007/BF01869291.
As different structural states of the (Na+-K+)-ATPase (EC 3.6.1.3) may lead to a changed reactivity to antibodies, the influence of Na+, K+, Mg++, Pi and ATP on the reaction between highly purified (Na+-K+)-ATPase and antibodies directed against the membrane-bound enzyme was measured. The antigen antibody reaction was registered by measuring the antibody inhibition of (Na+-K+)-ATPase activity. In the membrane-bound but not in the solubilized enzyme four different degrees of antibody inhibition were obtained at equilibrium of the antigen antibody reaction if different combinations of Na+, K+, Mg++ and ATP were present during the incubation with the antibodies. Corresponding to the different degrees of inhibition, different rates of enzyme inhibition were measured. (a) The smallest degree of enzyme inhibition was obtained when (i) only Mg++, (ii) Mg++ and Na+ or (iii) Mg++ and K+ were present during the antigen antibody reaction. (b) The enzyme activity was inhibited more strongly if Na+, Mg++ and ATP were present together. (c) It was inhibited even more if only (i) Na+, (ii) K+, (iii) ATP or both (iv) ATP and Na+, (v) ATP and K+, (vi) ATP and Mg++, or if (vii) no ATP and activating ions were present. (d) The highest degree of antibody inhibition was obtained if Mg++, ATP and K+ were present together. In the presence of Mg++ plus ADP and in the presence of Mg++ plus the ATP analog adenylyl (beta-gamma-methylene) diphosphonate, Na+ and K+ did not influence the degree of antibody inhibition as they did in the presence of Mg++ plus ATP. It was further found that the degree of antibody inhibition in the presence of Mg++, ATP and K+ was affected by the sequence of which K+ and ATP were added to the enzyme prior to the addition of the antibodies. It is suggested that by antibody inhibition different conformations of the (Na+-K+)-ATPase could be detected. These conformations may possibly not occur in the solubilized enzyme and therefore do not seem to be necessarily linked to the intermediary steps of the ATP hydrolysis of the enzyme. The structural changes which are induced by Na+ and K+ in the presence of Mg++ plus ATP are proposed to occur during the Na+-K+ transport.
由于(钠钾)-ATP酶(EC 3.6.1.3)的不同结构状态可能导致其对抗体的反应性发生变化,因此测定了钠离子、钾离子、镁离子、磷酸根离子和ATP对高度纯化的(钠钾)-ATP酶与针对膜结合酶的抗体之间反应的影响。通过测量抗体对(钠钾)-ATP酶活性的抑制作用来记录抗原抗体反应。在与抗体孵育期间,如果存在钠离子、钾离子、镁离子和ATP的不同组合,在抗原抗体反应达到平衡时,膜结合酶而非溶解状态的酶会出现四种不同程度的抗体抑制。对应于不同程度的抑制,测量了不同的酶抑制速率。(a)当(i)仅存在镁离子,(ii)镁离子和钠离子或(iii)镁离子和钾离子时,在抗原抗体反应期间获得的酶抑制程度最小。(b)如果钠离子、镁离子和ATP同时存在,酶活性受到更强的抑制。(c)如果仅(i)存在钠离子,(ii)存在钾离子,(iii)存在ATP,或(iv)ATP和钠离子两者,(v)ATP和钾离子,(vi)ATP和镁离子,或者(vii)不存在ATP和激活离子时,酶活性受到的抑制更强。(d)如果镁离子、ATP和钾离子同时存在,获得的抗体抑制程度最高。在存在镁离子加ADP以及存在镁离子加ATP类似物腺苷(β-γ-亚甲基)二磷酸酯的情况下,钠离子和钾离子不像在存在镁离子加ATP时那样影响抗体抑制程度。还发现,在镁离子、ATP和钾离子存在的情况下,抗体抑制程度受在添加抗体之前将钾离子和ATP添加到酶中的顺序影响。有人提出,通过抗体抑制可以检测到(钠钾)-ATP酶的不同构象。这些构象可能不会出现在溶解状态的酶中,因此似乎不一定与该酶ATP水解的中间步骤相关。有人提出,在镁离子加ATP存在的情况下,由钠离子和钾离子诱导的结构变化发生在钠钾转运过程中。