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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Active transport of ions across membranes: energetic role of electrostatics and binding site asymmetry
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Active transport of ions across membranes: energetic role of electrostatics and binding site asymmetry

机译:跨膜中离子的主动运输:静电和结合位点不对称的能量作用

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摘要

The active transport of ions across a membrane by an ATP-driven electrogenic ion pump is often described by an ‘alternate access’ model. The position of the binding site is assumed to be unchanged as the binding cavity opens alternatively to the uptake and discharge sides of the membrane. The ion binding affinity is higher on the uptake side of the membrane than on the discharge side. This difference in affinities is related to the maximum transport rate and to the efficiency with which ATP hydrolysis is coupled to active transport. Here we examine the electrostatic contribution to binding affinities, using a simple geometry for a model membrane-protein system, a continuum dielectric approximation, and a numerical method to calculate binding energy as a function of the binding site location. If the binding site is located asymmetrically, being further from the uptake side of the membrane than from the discharge side, there is a significant difference in binding free energy between the uptake and discharge states. This asymmetry can produce differences in affinities that are consistent with those measured for biological active transport systems. These results may account for the observed asymmetric location of the calcium binding site in the calcium ATPases from sarcoplasmic reticulum and from the plasma membrane. Electrostatic energy differences associated with binding site asymmetry may be a general feature of electrogenic transmembrane ion pumps.
机译:通过ATP驱动的电离离子泵在膜上穿过膜的离子的主动传输通常由“替代访问”模型描述。假设结合位点的位置不变,因为结合腔替代地打开膜的摄取和排出侧。离子结合亲和力在膜的摄取侧比放电侧的吸收侧更高。这种亲和力的这种差异与最大运输速率以及ATP水解与活性运输的效率有关。在这里,我们使用用于模型膜 - 蛋白质系统的简单几何形状,连续介电近似和数值方法来检查静电贡献,以及作为结合位点位置的函数计算结合能的数值方法。如果结合位点处于不对称地定位,则进一步来自膜的摄取侧而不是从排出侧的吸收侧,则吸收和放电状态之间的无结合能量有显着差异。这种不对称可以产生与用于生物活性运输系统的那些一致的亲和力的差异。这些结果可能考虑来自钙质括约肌钙的钙结合位点的观察到的来自肌肉网和血浆膜的不对称位置。与结合部位不对称相关的静电能量差可以是电跨膜离子泵的一般特征。

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