Gould G W, East J M, Froud R J, McWhirter J M, Stefanova H I, Lee A G
Biochem J. 1986 Jul 1;237(1):217-27. doi: 10.1042/bj2370217.
The Ca2+ + Mg2+-activated ATPase of sarcoplasmic reticulum exhibits complex kinetics of activation with respect to ATP. ATPase activity is pH-dependent, with similar pH-activity profiles at high and low concentrations of ATP. Low concentrations of Ca2+ in the micromolar range activate the ATPase, whereas activity is inhibited by Ca2+ at millimolar concentrations. The pH-dependence of this Ca2+ inhibition and the effect of the detergent C12E8 (dodecyl octaethylene glycol monoether) on Ca2+ inhibition are similar to those observed on activation by low concentrations of Ca2+. On the basis of these and other studies we present a kinetic model for the ATPase. The ATPase is postulated to exist in one of two conformations: a conformation (E1) of high affinity for Ca2+ and MgATP and a conformation (E2) of low affinity for Ca2+ and MgATP. Ca2+ binding to E2 and to the phosphorylated form E2P are equal. Proton binding at the Ca2+-binding sites in the E1 and E2 conformations explains the pH-dependence of Ca2+ effects. Binding of MgATP to the phosphorylated intermediate E1'PCa2 and to E2 modulate the rates of the transport step E1'PCa-E2'PCa2 and the return of the empty Ca2+ sites to the outside surface of the sarcoplasmic reticulum, as well as the rate of dephosphorylation of E2P. Only a single binding site for MgATP is postulated.
肌浆网的Ca2+ + Mg2+激活的ATP酶对ATP表现出复杂的激活动力学。ATP酶活性依赖于pH值,在高浓度和低浓度ATP时具有相似的pH-活性曲线。微摩尔范围内的低浓度Ca2+激活ATP酶,而毫摩尔浓度的Ca2+则抑制活性。这种Ca2+抑制的pH依赖性以及去污剂C12E8(十二烷基八乙二醇单醚)对Ca2+抑制的作用与低浓度Ca2+激活时观察到的相似。基于这些及其他研究,我们提出了ATP酶的动力学模型。假定ATP酶以两种构象之一存在:对Ca2+和MgATP具有高亲和力的构象(E1)和对Ca2+和MgATP具有低亲和力的构象(E2)。Ca2+与E2以及磷酸化形式E2P的结合是相等的。E1和E2构象中Ca2+结合位点处的质子结合解释了Ca2+效应的pH依赖性。MgATP与磷酸化中间体E1'PCa2和E2的结合调节了转运步骤E1'PCa-E2'PCa2的速率以及空Ca2+位点返回肌浆网外表面的速率,以及E2P的去磷酸化速率。假定MgATP只有一个结合位点。