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Proton Transfer Dynamics at the Membrane/Water Interface: Dependence on the Fixed and Mobile pH Buffers on the Size and Form of Membrane Particles and on the Interfacial Potential Barrier

机译:膜/水界面的质子传递动力学:取决于固定和移动的pH缓冲液膜颗粒的大小和形式以及界面势垒

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摘要

Crossing the membrane/water interface is an indispensable step in the transmembrane proton transfer. Elsewhere we have shown that the low dielectric permittivity of the surface water gives rise to a potential barrier for ions, so that the surface pH can deviate from that in the bulk water at steady operation of proton pumps. Here we addressed the retardation in the pulsed proton transfer across the interface as observed when light-triggered membrane proton pumps ejected or captured protons. By solving the system of diffusion equations we analyzed how the proton relaxation depends on the concentration of mobile pH buffers, on the surface buffer capacity, on the form and size of membrane particles, and on the height of the potential barrier. The fit of experimental data on proton relaxation in chromatophore vesicles from phototropic bacteria and in bacteriorhodopsin-containing membranes yielded estimates for the interfacial potential barrier for H+/OH ions of ∼120 meV. We analyzed published data on the acceleration of proton equilibration by anionic pH buffers and found that the height of the interfacial barrier correlated with their electric charge ranging from 90 to 120 meV for the singly charged species to >360 meV for the tetra-charged pyranine.
机译:跨膜/水界面是跨膜质子转移中必不可少的步骤。在其他地方,我们已经表明,地表水的低介电常数导致离子的势垒,因此,在质子泵稳定运行的情况下,表面pH值可能会与散装水中的pH值发生偏差。在这里,我们讨论了当光触发膜质子泵喷射或捕获质子时观察到的跨界面脉冲质子传递的延迟。通过求解扩散方程组,我们分析了质子弛豫如何取决于移动pH缓冲液的浓度,表面缓冲液容量,膜颗粒的形式和尺寸以及势垒高度。来自光致细菌的染色体囊泡和含细菌视紫红质膜中质子弛豫的实验数据的拟合得出了〜的H + / OH -离子的界面势垒估计。 120兆电子伏我们分析了通过阴离子pH缓冲液加速质子平衡的公开数据,发现界面势垒的高度与它们的电荷相关,电荷范围从单电荷物种的90到120 meV到四电荷吡喃的> 360 meV。

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