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钙离子/氢离子交换及钙离子-ATP酶转运的前稳态电发生事件。

Pre-steady state electrogenic events of Ca2+/H+ exchange and transport by the Ca2+-ATPase.

作者信息

Tadini-Buoninsegni Francesco, Bartolommei Gianluca, Moncelli Maria Rosa, Guidelli Rolando, Inesi Giuseppe

机构信息

Department of Chemistry, University of Florence, Sesto Fiorentino 50019, Italy.

出版信息

J Biol Chem. 2006 Dec 8;281(49):37720-7. doi: 10.1074/jbc.M606040200. Epub 2006 Oct 10.

Abstract

Native or recombinant SERCA (sarco(endo)plasmic reticulum Ca(2+) ATPase) was adsorbed on a solid supported membrane and then activated with Ca(2+) and ATP concentration jumps through rapid solution exchange. The resulting electrogenic events were recorded as electrical currents flowing along the external circuit. Current transients were observed following Ca(2+) jumps in the absence of ATP and following ATP jumps in the presence of Ca(2+). The related charge movements are attributed to Ca(2+) reaching its binding sites in the ground state of the enzyme (E(1)) and to its vectorial release from the enzyme phosphorylated by ATP (E(2)P). The Ca(2+) concentration and pH dependence as well as the time frames of the observed current transients are consistent with equilibrium and pre-steady state biochemical measurements of sequential steps within a single enzymatic cycle. Numerical integration of the current transients recorded at various pH values reveal partial charge compensation by H(+) in exchange for Ca(2+) at acidic (but not at alkaline) pH. Most interestingly, charge movements induced by Ca(2+) and ATP vary over different pH ranges, as the protonation probability of residues involved in Ca(2+)/H(+) exchange is lower in the E(1) than in the E(2)P state. Our single cycle measurements demonstrate that this difference contributes directly to the reduction of Ca(2+) affinity produced by ATP utilization and results in the countertransport of two Ca(2+) and two H(+) within each ATPase cycle at pH 7.0. The effects of site-directed mutations indicate that Glu-771 and Asp-800, within the Ca(2+) binding domain, are involved in the observed Ca(2+)/H(+) exchange.

摘要

天然或重组的肌浆网(内质网)钙ATP酶(SERCA)吸附在固体支撑膜上,然后通过快速溶液交换用钙和ATP浓度跃变激活。由此产生的电生事件被记录为沿外部电路流动的电流。在没有ATP的情况下钙跃变后以及在有钙的情况下ATP跃变后观察到电流瞬变。相关的电荷移动归因于钙在酶的基态(E(1))中到达其结合位点以及从被ATP磷酸化的酶(E(2)P)中矢量释放。观察到的电流瞬变的钙浓度和pH依赖性以及时间框架与单个酶循环中连续步骤的平衡和稳态前生化测量一致。在不同pH值下记录的电流瞬变的数值积分显示,在酸性(而非碱性)pH下,H(+)对Ca(2+)进行部分电荷补偿。最有趣的是,由钙和ATP诱导的电荷移动在不同的pH范围内变化,因为参与Ca(2+)/H(+)交换的残基在E(1)状态下的质子化概率低于E(2)P状态。我们的单循环测量表明,这种差异直接导致了ATP利用产生的钙亲和力降低,并在pH 7.0时每个ATP酶循环内导致两个Ca(2+)和两个H(+)的反向转运。定点突变的影响表明,钙结合域内的Glu-771和Asp-800参与了观察到的Ca(2+)/H(+)交换。

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