Fukushima Y, Yamada S, Nakao M
J Biochem. 1984 Feb;95(2):359-68. doi: 10.1093/oxfordjournals.jbchem.a134616.
In order to characterize low affinity ATP-binding sites of renal (Na+,K+) ATPase and sarcoplasmic reticulum (Ca2+)ATPase, the effects of ATP on the splitting of the K+-sensitive phosphoenzymes were compared. ATP inactivated the dephosphorylation in the case of (Na+,K+)ATPase at relatively high concentrations, while activating it in the case of (Ca2+)ATPase. When various nucleotides were tested in place of ATP, inactivators of (Na+,K+)ATPase were found to be activators in (Ca2+)ATPase, with a few exceptions. In the absence of Mg2+, the half-maximum concentration of ATP for the inhibition or for the activation was about 0.35 mM or 0.25 mM, respectively. These values are comparable to the previously reported Km or the dissociation constant of the low affinity ATP site estimated from the steady-state kinetics of the stimulation of ATP hydrolysis or from binding measurements. By increasing the concentration of Mg2+, but not Na+, the effect of ATP on the phosphoenzyme of (Na+,K+)ATPase was reduced. On the other hand, Mg2+ did not modify the effect of ATP on the phosphoenzyme of (Ca2+)ATPase. During (Na+,K+)ATPase turnover, the low affinity ATP site appeared to be exposed in the phosphorylated form of the enzyme, but the magnesium-complexed ATP interacted poorly with the reactive K+-sensitive phosphoenzyme, which has a tightly bound magnesium, probably because of interaction between the divalent cations. In the presence of physiological levels of Mg2+ and K+, ATP appeared to bind to the (Na+,K+)ATPase only after the dephosphorylation, while it binds to the (Ca2+)-ATPase before the dephosphorylation to activate the turnover.
为了表征肾(Na +,K +)ATP酶和肌浆网(Ca2 +)ATP酶的低亲和力ATP结合位点,比较了ATP对K +敏感磷酸酶裂解的影响。在相对高浓度下,ATP使(Na +,K +)ATP酶的去磷酸化失活,而在(Ca2 +)ATP酶的情况下则激活它。当用各种核苷酸代替ATP进行测试时,发现(Na +,K +)ATP酶的失活剂在(Ca2 +)ATP酶中是激活剂,只有少数例外。在没有Mg2 +的情况下,抑制或激活的ATP半数最大浓度分别约为0.35 mM或0.25 mM。这些值与先前报道的Km或根据ATP水解刺激的稳态动力学或结合测量估计的低亲和力ATP位点的解离常数相当。通过增加Mg2 +而不是Na +的浓度,ATP对(Na +,K +)ATP酶磷酸酶的作用降低。另一方面,Mg2 +没有改变ATP对(Ca2 +)ATP酶磷酸酶的作用。在(Na +,K +)ATP酶周转期间,低亲和力ATP位点似乎以酶的磷酸化形式暴露,但镁络合的ATP与具有紧密结合镁的反应性K +敏感磷酸酶相互作用较差,这可能是由于二价阳离子之间的相互作用。在生理水平的Mg2 +和K +存在下,ATP似乎仅在去磷酸化后与(Na +,K +)ATP酶结合,而在去磷酸化之前与(Ca2 +) - ATP酶结合以激活周转。