The Department of Physiology, Vanderbilt University School of Medicine, Nashville, Tennessee 37203, and The Department of Pharmacology, University of Toronto, Toronto, Canada.
J Gen Physiol. 1969 Jul 1;54(1):306-26. doi: 10.1085/jgp.54.1.306.
In plasma membranes of intact cells an enzymatic pump actively transports sodium ions inward and potassium ions outward. In preparations of broken membranes it appears as an adenosine triphosphatase dependent on magnesium, sodium, and potassium ions together. In this adenosine triphosphatase a phosphorylated intermediate is formed from adenosine triphosphate in the presence of sodium ions and is hydrolyzed with the addition of potassium ions. The normal intermediate was not split by adenosine diphosphate. However, selective poisoning by N-ethylmaleimide or partial inhibition by a low magnesium ion concentration yielded an intermediate split by adenosine diphosphate and insensitive to potassium ions. Pulse experiments on the native enzyme supported further a hypothesis of a sequence of phosphorylated forms, the first being made reversibly from adenosine triphosphate in the presence of sodium ion and the second being made irreversiblyfrom the first and hydrolyzed in the presence of potassium ion. The cardioactive steriod inhibitor, ouabain, appeared to combine preferentially with the second form. Phosphorylation was at the same active site according to electrophoretic patterns of proteolytic phosphorylated fragments of both reactive forms. It is concluded that there is a conformational change in the active center for phosphorylation during the normal reaction sequence. This change may be linked to one required theoretically for active translocation of ions across the cell membrane.
在完整细胞的质膜中,一种酶促泵将钠离子主动向内输送,钾离子向外输送。在破碎膜的制剂中,它似乎是一种依赖于镁、钠和钾离子的三磷酸腺苷酶。在这种三磷酸腺苷酶中,在钠离子存在的情况下,从三磷酸腺苷形成磷酸化中间产物,并在钾离子的加入下水解。正常的中间产物不会被二磷酸腺苷分解。然而,通过 N-乙基马来酰亚胺的选择性中毒或低镁离子浓度的部分抑制,产生了一种可被二磷酸腺苷分解且对钾离子不敏感的中间产物。对天然酶的脉冲实验进一步支持了一系列磷酸化形式的假说,第一个是在钠离子存在下从三磷酸腺苷可逆形成,第二个是从第一个不可逆形成并在钾离子存在下水解。强心甾类抑制剂哇巴因似乎优先与第二种形式结合。根据两种反应形式的蛋白水解磷酸化片段的电泳模式,磷酸化发生在相同的活性部位。结论是,在正常反应序列中,活性中心的构象发生变化。这种变化可能与理论上跨细胞膜离子主动转运所必需的变化有关。