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(钠 + 钾)依赖性腺苷三磷酸酶。哇巴因对无机磷酸、镁离子和钙离子与该酶相互作用的调节。

(Na+ + K+)-dependent adenosine triphosphatase. Regulation of inorganic phosphate, magnesium ion, and calcium ion interactions with the enzyme by ouabain.

作者信息

Askari A, Huang W H, McCormick P W

出版信息

J Biol Chem. 1983 Mar 25;258(6):3453-60.

PMID:6300045
Abstract
  1. (Na+ + K+)-dependent adenosine triphosphatase was phosphorylated on the alpha-subunit by Pi in the presence of Mg2+. Phosphorylation was stimulated by ouabain. The interactions of Pi, Mg2+, and ouabain with the enzyme could be explained by a random terreactant scheme in which the binding of each ligand to the enzyme increased the affinities for the other two. Dissociation constants of all steps of this scheme were estimated. 2. In the presence of Pi and ouabain and without added Mg2+, the phosphoenzyme was formed. Because this could be prevented by ethylenediaminetetraacetic acid, but not ethylene glycol bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid, phosphoenzyme formation under these conditions was probably dependent on traces of endogenous Mg2+. The ability of this Mg2+ to support phosphorylation could be explained by the large increase in the enzyme's affinity for Mg2+ by ouabain. 3. In the absence of ouabain, Ca2+ did not support phosphorylation and inhibited Mg2+-dependent phosphorylation. At lower concentrations, Ca2+ was competitive with Mg2+. With increasing Ca2+ concentration, negative cooperativity was observed, suggesting the existence of multiple divalent cation sites with equivalent affinities for Mg2+, but varying affinities for Ca2+. 4. In the presence of ouabain, the maximum inhibition of Mg2+-dependent phosphorylation by Ca2+ was 50%. With saturating Pi, Mg2+, and ouabain, the number of sites binding ouabain was equal to the number of sites phosphorylated. Although Ca2+ halved phosphorylation and reduced the affinity for ouabain about 100-fold, it did not affect the number of ouabain sites. 5. We suggest that the enzyme is an alpha-oligomer and that the half-of-the-sites reactivity for phosphorylation in the presence of Pi, Mg2+, ouabain, and optimal Ca2+ is caused by (a) ouabain-induced increase in the affinities of both protomers for Mg2+ and (b) the inability of Ca2+ to replace Mg2+ on one of the protomers.
摘要
  1. (钠+ + 钾+)依赖性三磷酸腺苷酶在镁离子存在的情况下,其α亚基被无机磷酸(Pi)磷酸化。哇巴因可刺激磷酸化作用。Pi、镁离子和哇巴因与该酶的相互作用可用随机三反应物模式来解释,即每个配体与酶的结合都会增加对其他两个配体的亲和力。该模式所有步骤的解离常数均已估算。2. 在有Pi和哇巴因且未添加镁离子的情况下,形成了磷酸化酶。由于这可被乙二胺四乙酸阻止,但不能被乙二醇双(β-氨基乙醚)-N,N,N',N'-四乙酸阻止,因此在这些条件下磷酸化酶的形成可能依赖于痕量的内源性镁离子。这种镁离子支持磷酸化的能力可通过哇巴因使酶对镁离子的亲和力大幅增加来解释。3. 在没有哇巴因的情况下,钙离子不支持磷酸化作用,反而抑制镁离子依赖性磷酸化。在较低浓度时,钙离子与镁离子存在竞争关系。随着钙离子浓度增加,观察到负协同效应,这表明存在多个对镁离子具有同等亲和力但对钙离子亲和力不同的二价阳离子位点。4. 在有哇巴因的情况下,钙离子对镁离子依赖性磷酸化的最大抑制率为50%。在Pi、镁离子和哇巴因饱和的情况下,结合哇巴因的位点数量与被磷酸化的位点数量相等。尽管钙离子使磷酸化作用减半,并使对哇巴因的亲和力降低约100倍,但它并不影响哇巴因位点的数量。5. 我们认为该酶是一种α寡聚体,在有Pi、镁离子、哇巴因和最佳钙离子存在时,磷酸化的半位点反应性是由以下原因导致的:(a)哇巴因诱导两个原聚体对镁离子的亲和力增加;(b)钙离子无法在其中一个原聚体上取代镁离子。

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