Marver D, Lear S, Marver L T, Silva P, Epstein F H
J Membr Biol. 1986;94(3):205-15. doi: 10.1007/BF01869716.
Scatchard analysis of 3H ouabain bound to isolated rectal gland cells as a function of increasing ouabain concentrations produced a concave curvilinear plot that was resolved into two specific sites with either a high (I) or low (II) affinity for ouabain. Cyclic cAMP/theophylline (+/- furosemide, 10(-4) M) increased the amount of 3H ouabain bound to the high-affinity site I. Vanadate, a phosphate congener which promotes formation of the ouabain-binding state of the enzyme, mimicked the effects of cAMP/theophylline at low concentrations of ouabain, suggesting that cAMP/theophylline increases binding to site I by enhancing the rate of turnover of resident enzyme. Enhanced 86Rb uptake seen following cAMP/theophylline administration was primarily associated with increased flux through the high-affinity ouabain site, and this stimulation was not obliterated by the co-administration of furosemide. A model was presented which suggested the presence of two noninteracting pools of enzyme or isozymes which exhibit either a high or low affinity for ouabain. Cyclic AMP both stimulated turnover via site I, and modified the kinetics of binding of 3H ouabain to site II. The (ave) Kd of 3H ouabain for site II was increased from 3.6 microM (controls) to 0.5 microM (cAMP/theophylline) and the Hill coefficient was modified from 0.45 (controls) to 1.12 (cAMP/theophylline), suggesting a transition from a negative- to a noncooperative binding state. While furosemide reversed the effects of cAMP/theophylline on site II kinetics, it did not obliterate cAMP/theophylline effects on site I. This suggests that cAMP may alter the intrinsic turnover rate of this particular pool of Na,K-ATPase in shark rectal gland.
对与分离的直肠腺细胞结合的³H哇巴因进行Scatchard分析,以哇巴因浓度增加为函数,得到了一个凹形曲线,该曲线可分解为对哇巴因具有高(I)或低(II)亲和力的两个特定位点。环磷酸腺苷/茶碱(±速尿,10⁻⁴M)增加了与高亲和力位点I结合的³H哇巴因的量。钒酸盐是一种促进酶的哇巴因结合状态形成的磷酸盐类似物,在低浓度哇巴因时模拟了环磷酸腺苷/茶碱的作用,表明环磷酸腺苷/茶碱通过提高驻留酶的周转速率增加与位点I的结合。给予环磷酸腺苷/茶碱后观察到的⁸⁶Rb摄取增强主要与通过高亲和力哇巴因位点的通量增加有关,并且这种刺激不会因同时给予速尿而消除。提出了一个模型,该模型表明存在两个对哇巴因具有高或低亲和力的非相互作用的酶池或同工酶池。环磷酸腺苷既通过位点I刺激周转,又改变了³H哇巴因与位点II结合的动力学。³H哇巴因对位点II的(平均)解离常数从3.6微摩尔(对照)增加到0.5微摩尔(环磷酸腺苷/茶碱),希尔系数从0.45(对照)改变为1.12(环磷酸腺苷/茶碱),表明从负协同结合状态转变为非协同结合状态。虽然速尿逆转了环磷酸腺苷/茶碱对位点II动力学的影响,但它并没有消除环磷酸腺苷/茶碱对位点I的影响。这表明环磷酸腺苷可能改变鲨鱼直肠腺中这一特定钠钾ATP酶池的内在周转速率。