首页> 美国卫生研究院文献>Biophysical Journal >Fast transient currents in NaK-ATPase induced by ATP concentration jumps from the P3-1-(35-dimethoxyphenyl)-2-phenyl-2-oxoethyl ester of ATP.
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Fast transient currents in NaK-ATPase induced by ATP concentration jumps from the P3-1-(35-dimethoxyphenyl)-2-phenyl-2-oxoethyl ester of ATP.

机译:ATP浓度诱导的NaK-ATPase中快速瞬态电流从ATP的P3- 1-(35-二甲氧基苯基)-2-苯基-2-氧代乙酯跃迁。

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摘要

Electrogenic ion transport by Na,K-ATPase was investigated by analysis of transient currents in a model system of protein-containing membrane fragments adsorbed to planar lipid bilayers. Sodium transport was triggered by ATP concentration jumps in which ATP was released from an inactive precursor by an intense near-UV light flash. The method has been used previously with the P3-1-(2-nitrophenyl)ethyl ester of ATP (NPE-caged ATP), from which the relatively slow rate of ATP release limits analysis of processes in the pump mechanism controlled by rate constants greater than 100 s(-1) at physiological pH. Here Na,K-ATPase was reinvestigated using the P3-[1-(3,5-dimethoxyphenyl)-2-phenyl-2-oxo]ethyl ester of ATP (DMB-caged ATP), which has an ATP release rate of >10(5) s(-1). Under otherwise identical conditions, photorelease of ATP from DMB-caged ATP showed faster kinetics of the transient current compared to that from NPE-caged ATP. With DMB-caged ATP, transient currents had rate profiles that were relatively insensitive to pH and the concentration of caged compound. Rate constants of ATP binding and of the E1 to E2 conformational change were compatible with earlier studies. Rate constants of enzyme phosphorylation and ADP-dependent dephosphorylation were 600 s(-1) and 1.5 x 10(6) M(-1) s(-1), respectively, at pH 7.2 and 22 degrees C.
机译:Na,K-ATPase的电离子迁移是通过分析模型电流中包含在平面脂质双层上的含蛋白质的膜片段的瞬态电流来研究的。 ATP浓度跃变触发了钠的转运,其中ATP通过强烈的近紫外光闪光从非活性前体中释放出来。该方法先前已与ATP的P3-1-(2-硝基苯基)乙酯(NPE笼罩的ATP)一起使用,从中相对较慢的ATP释放速率限制了由速率常数控制的泵机构过程的分析在生理pH值下超过100 s(-1)。在此,使用ATP的P3- [1-(3,5-二甲氧基苯基)-2-苯基-2-氧代]乙基酯(DMB笼罩的ATP)重新研究了Na,K-ATPase,其ATP释放速率> 10(5)s(-1)。在其他条件相同的条件下,与NPE笼养的ATP相比,DMB笼养的ATP的光释放显示出更快的瞬态动力学。使用DMB笼蔽的ATP,瞬态电流的速率曲线对pH和笼蔽化合物的浓度相对不敏感。 ATP结合和E1到E2构象变化的速率常数与早期研究兼容。在pH 7.2和22摄氏度下,酶磷酸化和ADP依赖的去磷酸化的速率常数分别为600 s(-1)和1.5 x 10(6)M(-1)s(-1)。

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