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通过快速混合技术研究牛脑钠钾激活的ATP磷酸水解酶。钾离子刺激从[32P]磷酸酶中释放出[32P]正磷酸盐,并将去磷酸化过程解析为两个阶段。

Bovine brain Na+,K+-stimulated ATP phosphohydrolase studied by a rapid-mixing technique. K+-stimulated liberation of [32P] orthophosphate from [32P] phosphoenzyme and resolution of the dephosphorylation into two phases.

作者信息

Mårdh S

出版信息

Biochim Biophys Acta. 1975 Jun 24;391(2):448-63. doi: 10.1016/0005-2744(75)90269-7.

Abstract

Dephosphorylation of [32P]phosphoenzyme of bovine brain Na+,K+-stimulated ATP phosphohydrolase (EC 3.6.1.3), labelled by [gamma-32P]ATP, was investigated at 21 degrees C by means of a rapid-mixing technique. On addition of a high concentration of KCl (10 mM) to [32P]phosphoenzyme at steady state in the presence of Mg2+ and Na+, very rapid dephosphorylation was obtained. Simultaneously, the amount of [32P]orthophosphate increased at about the same rate. It was concluded that this K+-stimulated dephosphorylation and liberation of [32P]orthophosphate from the [32P]phosphoenzyme was rapid enough to participate in the Na+,K+-stimulated hydrolysis of ATP. In order to study the dephosphorylation in absence of continuing 32P-labelling, excess unlabelled ATP or a chelator of Mg2+ was added. Simultaneous addition of a high concentration of KCl to the [32P]phosphoenzyme formed in the presence of Mg2+ and Na+ but in the absence of K+, resulted in an initial very rapid phase and a subsequent slower phase of dephosphorylation. With KCl also initially present in the incubation medium, only the slow phase was observed. The slow phase of dephosphorylation also seemed to be sufficiently rapid to participate in the Na+, K+-stimulated ATPase reaction. On addition of a high concentration of ADP (5 mM) to [32P]phosphoenzyme formed in the presence of Mg2+ and Na+, an initial comparatively rapid, and later slow phase of dephosphorylation were detected. This gave further support for different forms of phosphoenzyme. Approximate concentrations of these forms, in the absence and presence of KCl, were estimated by extrapolation and the turnover of these forms was calculated. The nature of the kinetically different components of phosphoenzyme and their role in the Na+, K+-stimulated ATPase reaction is discussed.

摘要

采用快速混合技术,于21℃研究了用[γ-32P]ATP标记的牛脑钠钾激活ATP磷酸水解酶(EC 3.6.1.3)的[32P]磷酸化酶的去磷酸化作用。在Mg2+和Na+存在的情况下,向处于稳态的[32P]磷酸化酶中加入高浓度的KCl(10 mM),可得到非常快速的去磷酸化作用。同时,[32P]正磷酸盐的量以大致相同的速率增加。得出的结论是,这种K+刺激的去磷酸化作用以及[32P]磷酸化酶中[32P]正磷酸盐的释放速度足够快,足以参与钠钾刺激的ATP水解反应。为了研究在没有持续32P标记的情况下的去磷酸化作用,加入了过量的未标记ATP或Mg2+螯合剂。在Mg2+和Na+存在但无K+的情况下形成的[32P]磷酸化酶中,同时加入高浓度的KCl,会导致去磷酸化作用出现初始的非常快速的阶段和随后较慢的阶段。如果孵育介质中最初也存在KCl,则只观察到缓慢阶段。去磷酸化作用的缓慢阶段似乎也足够快,足以参与钠钾刺激的ATP酶反应。在Mg2+和Na+存在的情况下形成的[32P]磷酸化酶中加入高浓度的ADP(5 mM),检测到去磷酸化作用有一个初始相对快速、随后缓慢的阶段。这进一步支持了磷酸化酶存在不同形式的观点。通过外推法估计了在有无KCl情况下这些形式的近似浓度,并计算了这些形式的周转率。讨论了磷酸化酶动力学上不同组分的性质及其在钠钾刺激的ATP酶反应中的作用。

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