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钠钾ATP酶的磷酸酶活性。来自配体相互作用和铷封闭实验的酶构象。

Phosphatase activity of Na+/K+-ATPase. Enzyme conformations from ligands interactions and Rb occlusion experiments.

作者信息

Campos M, Berberián G, Beaugé L

机构信息

Divisíon de Biofisica, Instituto M. y M. Ferreyra, Córdoba, Argentina.

出版信息

Biochim Biophys Acta. 1988 May 9;940(1):43-50. doi: 10.1016/0005-2736(88)90006-5.

Abstract

The present work compares the effects of several ligands (phosphatase substrates, MgCl2, RbCl and inorganic phosphate) and temperature on the phosphatase activity and the E2(Rb) occluded conformation of Na+/K+-ATPase. Cooling from 37 degrees C to 20 degrees C and 0 degrees C (hydrolysis experiments) or from 20 degrees C to 0 degrees C (occlusion experiments) had the following consequences: (i) dramatically reduced the Vmax for p-nitrophenyl phosphate and acetyl phosphate hydrolysis but it produced little or no changes in the Km for the substrates; (ii) led to a 5-fold drop in the Km for the inorganic phosphate-induced di-occlusion of E2(Rb); (iii) reduced the K0.5 and curve sigmoidicity of the Rb-stimulated hydrolysis of p-nitrophenyl phosphate and acetyl phosphate and the Rb-promoted E2(Rb) formation. At 20 degrees C, in the presence of 1 mM RbCl and no Mg2+, acetyl phosphate did not affect E2(Rb); with 3 mM MgCl2, acetyl phosphate stimulated a release of Rb from E2(Rb) both in the presence and absence of RbCl in the incubation mixture. As a function of acetyl phosphate concentration the Km for iRb release was indistinguishable from the Km found for stimulation of hydrolysis and enzyme phosphorylation under identical experimental conditions; in addition, the extrapolated di-occluded fraction corresponding to maximal hydrolysis was not different from 100%. These results indicate that although E2(K) might be an intermediary in the phosphatase reaction, the most abundant enzyme conformation during phosphatase turnover is E2 which has no K+ occluded in it. The ligand interactions associated to phosphatase activity do not support an equivalence of this reaction with the dephosphorylation step in the Na+ + K+-dependent ATP hydrolysis; on the other hand, there are similarities with the reversible binding of inorganic phosphate in the presence of Mg2+ and K+ ions.

摘要

本研究比较了几种配体(磷酸酶底物、MgCl2、RbCl和无机磷酸盐)以及温度对磷酸酶活性和Na+/K+-ATPase的E2(Rb)封闭构象的影响。从37℃冷却至20℃和0℃(水解实验)或从20℃冷却至0℃(封闭实验)会产生以下结果:(i)显著降低对硝基苯磷酸酯和乙酰磷酸水解的Vmax,但对底物的Km几乎没有影响或没有影响;(ii)导致无机磷酸盐诱导的E2(Rb)双封闭的Km下降5倍;(iii)降低了Rb刺激的对硝基苯磷酸酯和乙酰磷酸水解以及Rb促进的E2(Rb)形成的K0.5和曲线S形度。在20℃下,在存在1 mM RbCl且无Mg2+的情况下,乙酰磷酸不影响E2(Rb);在存在3 mM MgCl2的情况下,无论孵育混合物中是否存在RbCl,乙酰磷酸都能刺激Rb从E2(Rb)中释放。作为乙酰磷酸浓度的函数,iRb释放的Km与在相同实验条件下刺激水解和酶磷酸化所发现的Km没有区别;此外,对应于最大水解的外推双封闭分数与100%没有差异。这些结果表明,尽管E2(K)可能是磷酸酶反应的中间体,但在磷酸酶周转过程中最丰富的酶构象是其中没有K+封闭的E2。与磷酸酶活性相关的配体相互作用不支持该反应与Na+ + K+依赖性ATP水解中的去磷酸化步骤等效;另一方面,在存在Mg2+和K+离子的情况下,与无机磷酸盐的可逆结合存在相似之处。

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