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跨肌浆网囊泡膜的钙离子通量对内部pH值的依赖性。

The dependence on internal pH of Ca2+-fluxes across sarcoplasmic reticulum vesicular membranes.

作者信息

Fassold E, Hasselbach W

出版信息

Eur J Biochem. 1986 Jan 2;154(1):7-14. doi: 10.1111/j.1432-1033.1986.tb09352.x.

Abstract

The interdependence of the competition between Ca2+ and hydrogen ions for the internally located low-affinity Ca2+ binding sites of sarcoplasmic reticulum vesicles and the pH-dependent splitting rate of phosphoenzyme was investigated. Sarcoplasmic reticulum vesicles were preincubated at a selected pH and passive Ca2+ loading, active Ca2+ uptake at the same pH as well as active Ca2+ uptake at a distinct pH (pH-jump method) were observed. In addition, Cai-Cao exchange in the absence and presence of ADP and ATP-ADP exchange were measured. The overall ATP splitting rate was assayed with leaky vesicles in the presence of varied Ca2+ concentration and four different pH. All experiments were carried out at Ca2+ concentrations sufficient to saturate the externally located activating high-affinity binding sites at all pH and in the absence of affecting concentrations of monovalent cations. Active Ca2+ transport (particularly evident applying the pH-jump method) is facilitated at low intravesicular pH, reflecting the favoured Ca2+ release to the intravesicular space, in contrast to the reverse pH-dependence of passive Ca2+ accumulation and the initial rate of Cai-Cao exchange, both favoured by elevated internal Ca2+ binding capacity. The rates of ATP splitting, the continuing slow rate of Cai-Cao exchange, and the ATP-ADP exchange are optimal at an intermediate proton concentration, reflecting the influence of protons on partial reaction steps occurring later in the reaction cycle and the accelerated exchange of Ca2+ at the internal low-affinity sites as well as the establishment of a new pseudo equilibrium between the possible reaction intermediates. The pool of rapidly exchangeable Ca2+ is enlarged whereas the rate of slow exchange is unaltered or diminished (pH 7.8) by ADP.

摘要

研究了钙离子与氢离子竞争肌浆网囊泡内部低亲和力钙离子结合位点之间的相互依存关系,以及磷酸酶的pH依赖性裂解速率。肌浆网囊泡在选定的pH值下进行预孵育,并观察被动钙离子加载、在相同pH值下的主动钙离子摄取以及在不同pH值下的主动钙离子摄取(pH跳跃法)。此外,还测量了在有无ADP情况下的Cai-Cao交换以及ATP-ADP交换。在不同钙离子浓度和四种不同pH值下,用渗漏囊泡测定了总的ATP裂解速率。所有实验均在足以使所有pH值下外部位于激活高亲和力结合位点饱和的钙离子浓度下进行,且不存在影响单价阳离子浓度的情况。低泡内pH值促进了主动钙离子转运(特别是应用pH跳跃法时明显),这反映了钙离子向泡内空间释放的偏好,这与被动钙离子积累和Cai-Cao交换初始速率的反向pH依赖性相反,被动钙离子积累和Cai-Cao交换初始速率都受到内部钙离子结合能力升高的青睐。ATP裂解速率、持续缓慢的Cai-Cao交换速率以及ATP-ADP交换在中等质子浓度下是最佳的,这反映了质子对反应周期后期发生的部分反应步骤的影响,以及内部低亲和力位点处钙离子交换的加速,以及可能的反应中间体之间新的假平衡的建立。ADP会扩大快速可交换钙离子池,而缓慢交换速率不变或降低(pH 7.8)。

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