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最初与未磷酸化的肌浆网Ca(2+)-ATP酶结合的两个钙离子,当它们从磷酸化的ATP酶向管腔解离时,在动力学上就不再能区分了。

The two calcium ions initially bound to nonphosphorylated sarcoplasmic reticulum Ca(2+)-ATPase can no longer be kinetically distinguished when they dissociate from phosphorylated ATPase toward the lumen.

作者信息

Orlowski S, Champeil P

机构信息

Département de Biologie Cellulaire et Moléculaire, Service de Biophysique des Proteins et des Membranes et URA Centre National de la Recherche Scientifique, Gif-sur-Yvette, France.

出版信息

Biochemistry. 1991 Nov 26;30(47):11331-42. doi: 10.1021/bi00111a020.

Abstract

Using rapid filtration, we investigated the kinetics of release toward the lumen of sarcoplasmic reticulum vesicles of the two Ca2+ ions transported by the Ca(2+)-dependent ATPase of these vesicles. Release rates at 20 degrees C were measured by three methods, with vesicles previously made leaky with an ionophore. First, we measured the rate at which 45Ca2+ bound to ATPase approached its steady-state level after addition of ATP to the 45Ca(2+)-equilibrated ATPase. At pH 6 in the absence of potassium, the observed kinetics did not reveal any very fast phase of 45Ca2+ dissociation from phosphorylated ATPase. Second, we measured the kinetics of 45Ca2+ dissociation from phosphorylated ATPase in a "chase" experiment, by isotopic dilution of calcium under turnover conditions in the presence of potassium. We found that these kinetics were essentially monophasic. Moreover, when they were measured in the presence of a high concentration of calcium, designed to saturate the low-affinity calcium transport sites on the lumenal side of the ATPase, they only departed slightly from monophasic behavior, irrespective of the experimental pH (pH 6, 7, or 9). This small perturbation by high calcium concentrations of the observed dissociation kinetics was attributed to ADP-facilitated rapid exchange of 40Ca2+ for Mg2+ at the catalytic site of phosphorylated ATPase. The third method was based on the fact that phosphorylation-induced 45Ca2+ occlusion occurred faster than 45Ca2+ dissociation from nonphosphorylated ATPase: here, we measured the rate of 45Ca2+ internalization on addition to 45Ca(2+)-saturated ATPase of an unlabeled ATP-containing medium. This method allowed separate observation of the dissociation kinetics of each of the two 45Ca2+ ions bound to phosphorylated ATPase, after either one or the other had been labeled by a preliminary partial isotopic exchange in the non-phosphorylated state of the ATPase. We found that after ATP-induced phosphorylation, the two 45Ca2+ ions dissociated toward the lumenal medium with virtually identical rate constants; this was observed under different ionic and pH conditions and also in the presence of a high Ca2+ concentration. As a control, the same partial isotopic exchange procedure allowed us to confirm that, in contrast, when ATP was absent from the final dissociation medium, the two 45Ca2+ ions dissociated from nonphosphorylated ATPase toward the cytoplasmic medium at different rates, the one bound more deeply only dissociating after a lag period corresponding to dissociation of the superficial one.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

我们采用快速过滤法,研究了这些囊泡中依赖钙的ATP酶所转运的两种钙离子向肌浆网囊泡腔释放的动力学过程。在20℃下,通过三种方法测量释放速率,所用囊泡事先用离子载体使其产生渗漏。首先,我们测量了在向45Ca2+平衡的ATP酶中加入ATP后,45Ca2+与ATP酶结合达到稳态水平的速率。在pH 6且无钾的条件下,观察到的动力学过程未显示出45Ca2+从磷酸化ATP酶解离的任何非常快速的阶段。其次,我们在“追踪”实验中,通过在有钾存在的周转条件下对钙进行同位素稀释,测量了45Ca2+从磷酸化ATP酶解离的动力学过程。我们发现这些动力学过程基本上是单相的。此外,当在高钙浓度存在下进行测量时,高钙浓度旨在使ATP酶腔侧的低亲和力钙转运位点饱和,无论实验pH值(pH 6、7或9)如何,它们与单相行为的偏离都很小。高钙浓度对观察到的解离动力学的这种小扰动归因于ADP促进的40Ca2+在磷酸化ATP酶催化位点与Mg2+的快速交换。第三种方法基于这样一个事实,即磷酸化诱导的45Ca2+封闭比45Ca2+从非磷酸化ATP酶解离更快:在这里,我们测量了在向45Ca2+饱和的ATP酶中加入不含标记的含ATP培养基后45Ca2+内化的速率。该方法允许在ATP酶的非磷酸化状态下通过初步的部分同位素交换对结合到磷酸化ATP酶上的两个45Ca2+离子中的一个或另一个进行标记后,分别观察它们的解离动力学。我们发现,在ATP诱导磷酸化后,两个45Ca2+离子以几乎相同的速率常数向腔侧介质解离;这在不同的离子和pH条件下以及在高Ca2+浓度存在下都观察到了。作为对照,相同的部分同位素交换程序使我们能够确认,相反,当最终解离介质中不存在ATP时,两个45Ca2+离子从非磷酸化ATP酶向细胞质介质以不同的速率解离,结合较深的那个离子仅在对应于表面那个离子解离的延迟期后才解离。(摘要截选至400字)

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