Brooker R J, Slayman C W
J Biol Chem. 1983 Jul 25;258(14):8833-8.
The rate of ATP hydrolysis by the Neurospora plasma membrane [H+]-ATPase has been measured over a wide range of Mg2+ and ATP concentrations, and on the basis of the results, a kinetic model for the enzyme has been developed. The model includes the following three binding sites: 1) a catalytic site at which MgATP serves as the true substrate, with free ATP as a weak competitive inhibitor; 2) a high affinity site for free Mg2+, which serves to activate the enzyme with an apparent K1/2 (termed KMgA) of about 15 microM; and 3) a separate low affinity site at which Mg2+ causes mixed type inhibition, lowering the Vmax while raising the KS for MgATP at the catalytic site. The Ki for Mg2+ at the low affinity site (termed KMgI) is about 3.5 mM. The model satisfactorily explains the activity of the enzyme as Mg2+ and ATP are varied, separately and together, over a wide range. It can also account for the previously reported effects of Mg2+ and ATP on the inhibition of the Neurospora [H+]-ATPase by N-ethylmaleimide (Brooker, R. J., and Slayman, C. W. (1982) J. Biol. Chem. 257, 12051-12055; Brooker, R. J., and Slayman, C. W. (1983) J. Biol. Chem. 258, 8827-8832).
已经在广泛的Mg2+和ATP浓度范围内测量了粗糙脉孢菌质膜[H+]-ATP酶的ATP水解速率,并根据这些结果建立了该酶的动力学模型。该模型包括以下三个结合位点:1)一个催化位点,MgATP作为真正的底物,游离ATP作为弱竞争性抑制剂;2)一个对游离Mg2+的高亲和力位点,其作用是激活该酶,表观K1/2(称为KMgA)约为15 microM;3)一个单独的低亲和力位点,Mg2+在该位点引起混合型抑制,降低Vmax,同时提高催化位点上MgATP的KS。低亲和力位点上Mg2+的Ki(称为KMgI)约为3.5 mM。该模型令人满意地解释了在广泛范围内单独或一起改变Mg2+和ATP时该酶的活性。它还可以解释先前报道的Mg2+和ATP对N-乙基马来酰亚胺抑制粗糙脉孢菌[H+]-ATP酶的影响(布鲁克,R.J.,和斯莱曼,C.W.(1982年)《生物化学杂志》257,12051-12055;布鲁克,R.J.,和斯莱曼,C.W.(1983年)《生物化学杂志》258,8827-8832)。