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ATP hydrolysis associated with an uncoupled sodium flux through the sodium pump: evidence for allosteric effects of intracellular ATP and extracellular sodium

机译:ATP水解与通过钠泵的未耦合钠通量相关:细胞内ATP和细胞外钠的变构作用的证据

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摘要

1. A method has been developed for regenerating [γ32P]ATP of constant specific activity within resealed red cell ghosts, and for measuring its hydrolysis. The method may be used to follow the hydrolysis of ATP at concentrations down to 1 μM, and for periods long enough for the ATP at these very low concentrations to turn over several hundred times.2. Using this method we have been able to show that the `uncoupled' efflux of Na caused by the Na pump when resealed red cell ghosts are incubated in (Na + K)-free media is associated with a hydrolysis of ATP. The stoicheiometry is roughly 2-3 Na ions expelled per molecule of ATP hydrolysed.3. Measurements of ATP hydrolysis and Na efflux as functions of intracellular ATP concentration have shown that uncoupled Na efflux, and its associated ATP hydrolysis, are saturated at intracellular ATP concentrations in the region of 1 μM.4. Measurement of ATP hydrolysis as a function of ATP concentration in resealed ghosts incubated in a K-containing medium gave a complicated activation curve suggesting the involvement of high-affinity (Km ca. 1 μM) and low-affinity (Km ca. 100 μM) sites.5. When resealed ghosts containing about 1 μM-ATP were incubated in a Na-free or in a high-Na medium, the addition of K to the medium reduced the rate of ouabain-sensitive ATP hydrolysis.6. Ouabain-sensitive ATP hydrolysis in resealed ghosts incubated in K-free choline media was inhibited by external Na at low concentrations (Ki < 1 mM), but this inhibition was reversed as the external Na concentration was further increased.7. The results show that uncoupled Na efflux may be thought of as the transport mode associated with Na-ATPase activity, just as Na-K exchange is the transport mode associated with (Na + K)-ATPase activity. The significance of the differences between uncoupled Na efflux and Na-ATPase activity, on the one hand, and Na—K exchange and (Na + K)-ATPase activity, on the other, is discussed.
机译:1.已开发出一种方法,用于在重新密封的红细胞伪影中再生具有恒定比活性的[γ 32 P] ATP,并测量其水解程度。该方法可用于追踪低至1μM浓度的ATP的水解过程,并持续足够长的时间,以使这些极低浓度的ATP水解数百次。2。使用这种方法,我们已经能够证明,将重新密封的红细胞鬼影在无(Na + K)的培养基中孵育时,由Na泵引起的Na的“解偶联”外排与ATP的水解有关。化学计量是每个水解的ATP分子排出约2-3个Na离子。3。 ATP水解和Na流出作为细胞内ATP浓度的函数的测量表明,未偶联的Na流出及其相关的ATP水解在细胞内ATP浓度在1μM.4附近达到饱和。在含K的培养基中孵育后,重新密封的幽灵中ATP水解与ATP浓度的关系的测量给出了复杂的激活曲线,表明涉及高亲和力(Km约1μM)和低亲和力(Km约100μM)网站5。当将重新密封的含有约1μM-ATP的幽灵在无Na或高Na的培养基中孵育时,向培养基中添加K会降低哇巴因敏感性ATP水解的速率。6。低浓度(Ki <1 mM)的外部Na抑制了在无K胆碱培养基中孵育的重新密封的幽灵中对Ouabain敏感的ATP水解,但是随着外部Na浓度的进一步增加,这种抑制作用被逆转了。7。结果表明,未耦合的Na外排可以被认为是与Na-ATPase活性相关的运输方式,就像Na-K交换是与(Na + K)-ATPase活性相关的运输方式一样。一方面讨论了未偶联的Na外排和Na-ATPase活性之间的差异,另一方面是Na-K交换和(Na + K)-ATPase活性之间差异的意义。

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