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钠离子作用于高亲和力的细胞外位点,通过减缓去磷酸化过程来抑制钠泵的钠-ATP酶活性。

Sodium ions, acting at high-affinity extracellular sites, inhibit sodium-ATPase activity of the sodium pump by slowing dephosphorylation.

作者信息

Beaugé L A, Glynn I M

出版信息

J Physiol. 1979 Apr;289:17-31. doi: 10.1113/jphysiol.1979.sp012722.

Abstract
  1. It is known that extracellular Na+ ions, in low concentrations, inhibit Na+-ATPase activity in resealed red cell ghosts and that this inhibition is reversed by high concentrations of extracellular Na+. We have attempted to elucidate these actions of extracellular Na+ by investigating the dependence on Na+ concentration of (a) ATP-ADP exchange and Na+-ATPase activity both in native and in N-ethylmaleimide (NEM)-treated (Na+ + K+)-ATPase from pig kidney, and (b) the rate of hydrolysis of the phosphorylated kidney enzyme in the absence of K+ ions. 2. With the native enzyme, ATP-ADP exchange and Na+-ATPase activity showed similar responses to changes in Na+ concentration: a steep but S-shaped rise between 0 and 2.5 mM, a slight fall (exchange) or a plateau (ATPase) between 2.5 and 10 mM, and a roughly linear rise between 10 and 150 mM. With NEM-treated enzyme, the ATP-ADP exchange, which was greatly accelerated, showed no sign either of inhibition at intermediate Na+ concentrations or of the reversal of that inhibition at higher concentrations. The exchange rate increased with Na+ concentration in a smooth curve and was half-maximal at about 7 mM. 3. The effects, on ATP-ADP exchange, of changing the concentrations of ATP, ADP and Mg have also been investigated. With both native and NEM-treated enzyme, the interactions of ATP, ADP and Mg are complicated; they show that, for the reaction leading to ATP formation, either free ADP rather than MgADP is the substrate, or Mg2+ ions are inhibitory (or both). 4. Since NEM, in the conditions in which we have used it, is believed to act by inhibiting the conversion of an ADP-sensitive form of the phosphoenzyme (E1P) to an ADP-insensitive form (E2P), the absence of Na+ inhibition of ATP-ADP exchange in NEM-treated enzyme, together with the parallel effects of Na+ ions on the ATP-ADP exchange activity and on the Na+-ATPase activity of native enzyme, suggests that the inhibitory effect of external Na+ occurs after the conversion of E1P into E2P. 5. To test whether this inhibitory effect of Na+ reflected inhibition of the hydrolysis of E2P, we measured the rate of loss of incorporated 32P when enzyme, newly phosphorylated by [gamma32P]ATP, was squirted into a large volume of ice-cold solution containing 1,2-cyclohexylenedinitrilotetraacetic aicd (CDTA), unlabelled ATP and 0, 5 or 150 mM-Na+. The rate of loss of radioactivity from the membranes was least at 5 mM-Na+, about twice as great at 150 mM-Na+, and about 5 times as great at 20 microM (final) Na+. 6. An unexpected feature of the results was that the pattern of stimulation of ATP-ADP exchange in intact cells. If Na+ ions are absent externally, a different could be fitted better on the assumption that activation by internal Na+ occurs at two sites with equal affinities, than on the assumptions that activation occurs at a single site or at three sites with equal affinities.
摘要
  1. 已知低浓度的细胞外钠离子会抑制重封红细胞空壳中的钠-ATP酶活性,且这种抑制作用会被高浓度的细胞外钠离子逆转。我们试图通过研究猪肾中天然的和经N-乙基马来酰亚胺(NEM)处理的(钠+钾)-ATP酶的(a)ATP-ADP交换和钠-ATP酶活性对钠离子浓度的依赖性,以及(b)在无钾离子情况下磷酸化肾酶的水解速率,来阐明细胞外钠离子的这些作用。2. 对于天然酶,ATP-ADP交换和钠-ATP酶活性对钠离子浓度变化表现出相似的反应:在0至2.5 mM之间急剧但呈S形上升,在2.5至10 mM之间略有下降(交换)或达到平台期(ATP酶),在10至150 mM之间大致呈线性上升。对于经NEM处理的酶,大大加速的ATP-ADP交换在中等钠离子浓度下既没有抑制迹象,在较高浓度下也没有抑制逆转的迹象。交换速率随钠离子浓度以平滑曲线增加,在约7 mM时达到最大值的一半。3. 还研究了改变ATP、ADP和镁的浓度对ATP-ADP交换的影响。对于天然酶和经NEM处理的酶,ATP、ADP和镁的相互作用都很复杂;它们表明,对于导致ATP形成的反应,要么游离ADP而非MgADP是底物,要么镁离子具有抑制作用(或两者兼有)。4. 由于在我们使用的条件下,NEM被认为是通过抑制磷酶的ADP敏感形式(E1P)向ADP不敏感形式(E2P)的转化而起作用,经NEM处理的酶中不存在钠离子对ATP-ADP交换的抑制作用,以及钠离子对天然酶的ATP-ADP交换活性和钠-ATP酶活性的平行影响,表明外部钠离子的抑制作用发生在E1P转化为E2P之后。5. 为了测试钠离子的这种抑制作用是否反映了对E2P水解的抑制,我们测量了用[γ32P]ATP新磷酸化的酶被喷入含有1,2-环己二胺四乙酸(CDTA)、未标记的ATP和0、5或150 mM-钠离子的大量冰冷溶液中时,掺入的32P的损失速率。膜上放射性的损失速率在5 mM-钠离子时最小,在150 mM-钠离子时约为两倍,在20 μM(终浓度)钠离子时约为五倍。6. 结果的一个意外特征是完整细胞中ATP-ADP交换的刺激模式。如果外部不存在钠离子,与激活发生在单个位点或三个具有相等亲和力的位点的假设相比,基于内部钠离子在两个具有相等亲和力的位点发生激活的假设能更好地拟合数据。

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