Nagamune H, Urayama O, Hara Y, Nakao M
J Biochem. 1986 Jun;99(6):1613-24. doi: 10.1093/oxfordjournals.jbchem.a135635.
The ouabain-sensitive phosphatase activity of purified pig kidney Na,K-ATPase preparation in the absence of potassium ion ((-K)phosphatase) was examined precisely. During the preparation procedures, the (-K)3-O-methylfluoresceinphosphatase ((-K)3-OMFPase) activity or the (-K)p-nitrophenylphosphatase ((-K)pNPPase) activity appeared to be purified in parallel with the Na,K-ATPase activity. The (-K)phosphatase activity was competitively inhibited by ATP and by ADP, with the K1 values of 0.25 microM and 1.4 microM, respectively. These values are consistent with their Kd values for the high-affinity ATP binding site of the Na,K-ATPase (Hegyvary, C. & Post, R.L. (1971) J. Biol. Chem. 246, 5234-5240). The substrate, pNPP, apparently competed with covalently bound fluorescein-5'-isothiocyanate (FITC), which is known to bind in the neighborhood of the high-affinity ATP binding site of the Na,K-ATPase, in both the (-K)phosphatase and the (+K)phosphatase reactions. The FITC-fluorescence intensity of FITC-labeled enzyme at the maximal steady-state activity of the (-K)phosphatase reaction was at a similar level to that of the E2 species. However, the FITC-labeled enzyme in the presence of only magnesium ion or only pNPP gave a fluorescence level similar to that of the E1 species. Oligomycin inhibited the (-K)phosphatase activity by at most 46%. On the basis of these results, it is strongly suggested that the (-K)phosphatase reaction is catalyzed at the high-affinity ATP binding site of Na,K-ATPase, and the (-K)phosphatase reaction proceeds in a cyclic manner (E1----E2----E1).
精确检测了纯化猪肾钠钾 -ATP 酶制剂在无钾离子情况下的哇巴因敏感磷酸酶活性((-K)磷酸酶)。在制备过程中,(-K)3 -O -甲基荧光素磷酸酶((-K)3 -OMFPase)活性或(-K)对硝基苯磷酸酶((-K)pNPPase)活性似乎与钠钾 -ATP 酶活性平行纯化。(-K)磷酸酶活性受到 ATP 和 ADP 的竞争性抑制,其 K1 值分别为 0.25 μM 和 1.4 μM。这些值与它们在钠钾 -ATP 酶高亲和力 ATP 结合位点的 Kd 值一致(赫吉瓦里,C. 和波斯特,R.L.(1971 年)《生物化学杂志》246,5234 - 5240)。底物 pNPP 显然在(-K)磷酸酶和(+K)磷酸酶反应中与共价结合的异硫氰酸荧光素 -5'-(FITC)竞争,已知 FITC 结合在钠钾 -ATP 酶高亲和力 ATP 结合位点附近。在(-K)磷酸酶反应的最大稳态活性下,FITC 标记酶的 FITC 荧光强度与 E2 物种的相似。然而,仅存在镁离子或仅存在 pNPP 时的 FITC 标记酶产生的荧光水平与 E1 物种的相似。寡霉素对(-K)磷酸酶活性的抑制作用最多为 46%。基于这些结果,强烈表明(-K)磷酸酶反应在钠钾 -ATP 酶的高亲和力 ATP 结合位点催化,并且(-K)磷酸酶反应以循环方式进行(E1----E2----E1)。