Graupner Michael, Erler Frido, Meyer-Hermann Michael
Institute for Theoretical Physics, Dresden University of Technology, 01062 Dresden, Germany ; Laboratoire de Neurophysique et Physiologie, CNRS UMR 8119, Université René Descartes - Paris V, 45, rue des Saints Pères, 75270 Paris Cedex 06, France.
J Biol Phys. 2005 May;31(2):183-206. doi: 10.1007/s10867-005-4472-2.
The ATP-driven Plasma Membrane Calcium pump or Ca(2+)-ATPase (PMCA) is characterized by a high affinity for calcium and a low transport rate compared to other transmembrane calcium transport proteins. It plays a crucial role for calcium extrusion from cells. Calmodulin is an intracellular calcium buffering protein which is capable in its Ca(2+) liganded form of stimulating the PMCA by increasing both the affinity to calcium and the maximum calcium transport rate. We introduce a new model of this stimulation process and derive analytical expressions for experimental observables in order to determine the model parameters on the basis of specific experiments. We furthermore develop a model for the pumping activity. The pumping description resolves the seeming contradiction of the Ca(2+):ATP stoichiometry of 1:1 during a translocation step and the observation that the pump binds two calcium ions at the intracellular site. The combination of the calcium pumping and the stimulation model correctly describes PMCA function. We find that the processes of calmodulin-calcium complex attachment to the pump and of stimulation have to be separated. Other PMCA properties are discussed in the framework of the model. The presented model can serve as a tool for calcium dynamics simulations and provides the possibility to characterize different pump isoforms by different type-specific parameter sets.
ATP驱动的质膜钙泵或Ca(2+)-ATP酶(PMCA)的特点是与其他跨膜钙转运蛋白相比,对钙具有高亲和力且转运速率低。它在细胞钙外排中起关键作用。钙调蛋白是一种细胞内钙缓冲蛋白,其Ca(2+)结合形式能够通过增加对钙的亲和力和最大钙转运速率来刺激PMCA。我们引入了这种刺激过程的新模型,并推导了实验可观测值的解析表达式,以便根据特定实验确定模型参数。我们还开发了一个泵浦活性模型。该泵浦描述解决了转运步骤中Ca(2+):ATP化学计量比为1:1与泵在细胞内位点结合两个钙离子这一观察结果之间看似矛盾的问题。钙泵浦模型和刺激模型的结合正确地描述了PMCA的功能。我们发现钙调蛋白-钙复合物与泵的结合过程和刺激过程必须分开。在模型框架内讨论了其他PMCA特性。所提出的模型可作为钙动力学模拟的工具,并提供通过不同类型特异性参数集表征不同泵亚型的可能性。