McWhirter J M, Gould G W, East J M, Lee A G
Department of Biochemistry, University of Southampton, U.K.
Biochem J. 1987 Aug 1;245(3):713-21. doi: 10.1042/bj2450713.
We present a model for Ca2+ efflux from vesicles of sarcoplasmic reticulum (SR). It is proposed that efflux is mediated by the Ca2+ + Mg2+-activated ATPase that is responsible for Ca2+ uptake in this system. In the normal ATPase cycle of the ATPase, phosphorylation of the ATPase is followed by a conformational change in which the Ca2+-binding sites change from being outward-facing and of high affinity to being inward-facing and of low affinity. To mediate Ca2+ efflux, it is proposed that the ATPase can adopt a conformation in which the Ca2+-binding sites are of low affinity but still outward-facing. It is shown that experimental data on the rates of Ca2+ efflux can be simulated in terms of this model, with Ca2+-binding-site affinities previously proposed to explain ATPase activity [Gould, East, Froud, McWhirter, Stefanova & Lee (1986) Biochem. J. 237, 217-227]. Effects of Mg2+ and adenine nucleotides on efflux rates are explained. It is suggested that Ca2+ efflux from SR mediated by the ATPase could be important in excitation-contraction coupling in skeletal muscle.
我们提出了一种肌浆网(SR)囊泡中Ca2+外流的模型。该模型认为,外流由负责该系统中Ca2+摄取的Ca2+ + Mg2+激活的ATP酶介导。在ATP酶的正常ATP酶循环中,ATP酶磷酸化后会发生构象变化,其中Ca2+结合位点从外向且高亲和力变为内向且低亲和力。为了介导Ca2+外流,有人提出ATP酶可以采用一种构象,其中Ca2+结合位点具有低亲和力但仍向外。结果表明,根据该模型可以模拟Ca2+外流速率的实验数据,其中Ca2+结合位点亲和力先前已被提出用于解释ATP酶活性[古尔德、伊斯特、弗劳德、麦克惠特、斯特凡诺娃和李(1986年)《生物化学杂志》237卷,217 - 227页]。解释了Mg2+和腺嘌呤核苷酸对外流速率的影响。有人认为,由ATP酶介导的SR中Ca2+外流在骨骼肌兴奋 - 收缩偶联中可能很重要。