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The surface potential on the purple membrane measured using a modified bacteriorhodopsin chromophore as the spectroscopic probe

机译:使用修饰的细菌视紫红质生色团作为光谱探针测量的紫色膜上的表面电势

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>The surface potential of the purple membrane was measured by a novel method by using an artificial bacteriorhodopsin whose chromophore was 13-CF3 retinal instead of retinal. When attached to the apoprotein by a Schiff base, the intrinsic pK of the 13-CF3 chromophore is around 7.3. The apparent pK of this pigment depends on the surface potential and thus on the electrolyte concentration. This allowed us to determine the surface charge density using the Gouy-Chapman equation. The surface charge density was found to be −1.65 ± 0.15 × 10−3 electronic charges per Å2 or about 2 negative charges/bacteriorhodopsin. This large value for the surface potential probably explains both part of the strong apparent association of divalent cations with the membrane and the effect of low salt concentrations on light-induced proton release from the purple membrane.
机译:>使用发色团为13-CF 3 视网膜的人工细菌视紫红质,通过新颖的方法测量紫色膜的表面电势。 13-CF 3 发色团的内在p K 通过Schiff碱基连接到载脂蛋白上时约为7.3。该颜料的表观p K 取决于表面电势,并因此取决于电解质的浓度。这使我们能够使用Gouy-Chapman方程确定表面电荷密度。发现每Å 2 的表面电荷密度为-1.65±0.15×10 -3 电子电荷或约2个负电荷/细菌视紫红质。表面电位的这个大值可能解释了二价阳离子与膜之间强烈的表观结合以及低盐浓度对光诱导质子从紫色膜释放的影响。

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