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Chromophore of Bacteriorhodopsin is Closer to the Cytoplasmic Surface of Purple Membrane

机译:细菌视紫红质的发色团更靠近紫色膜的细胞质表面

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摘要

Transmembrane location of the retinal chromophore, either native or reduced in situ to a fluorescent derivative, of the purple membrane of Halobacterium halobium was investigated with fluorescence energy transfer techniques. Single sheets of purple membrane, either native or reduced with borohydride, were adsorbed on polylysine-coated glass; the orientation, whether the exposed surfaces were cytoplasmic or extracellular, was controlled by adjusting the pH of the membrane suspension before the adsorption. On the exposed surface of the reduced membrane, a layer of cytochrome c, hemoglobin, or ferritin was deposited. The rate of excitation energy transfer from the fluorescent chromophore in the membrane to the colored protein was greater when the protein was on the cytoplasmic surface of the membrane than when it was on the extracellular surface. Analysis in which uniform distribution of the protein on the surface was assumed showed that the reduced chromophore is situated at a depth of <1.5 nm from the cytoplasmic surface. The location of the native retinal chromophore was examined by depositing a small amount of tris(2,2′-bipyridyl)ruthenium(II) complex on the native membrane adsorbed on the glass. Energy transfer from the luminescent complex to the retinal chromosphore was more efficient on the cytoplasmic surface than on the extracellular surface, suggesting that the native chromophore is also on the cytoplasmic side. From these and previous results we conclude that the chromophore, whether native or reduced, of bacteriorhodopsin is located at a depth of 1.0 ± 0.3 nm from the cytoplasmic surface of purple membrane.
机译:用荧光能量转移技术研究了卤代盐杆菌紫色膜的天然或原位还原为荧光衍生物的视网膜发色团的跨膜位置。将单片紫色膜(天然的或用硼氢化物还原的)吸附在涂有聚赖氨酸的玻璃上;通过调节吸附前膜悬浮液的pH值来控制取向,无论暴露的表面是细胞质的还是细胞外的。在还原膜的暴露表面上,沉积了一层细胞色素c,血红蛋白或铁蛋白。当蛋白质在膜的细胞质表面上时,从膜中的荧光发色团到有色蛋白质的激发能转移速率要比在细胞外表面上的大。假定蛋白质在表面上均匀分布的分析表明,还原的生色团位于距细胞质表面<1.5 nm的深度处。通过在玻璃上吸附的天然膜上沉积少量的三(2,2'-联吡啶基)钌(II)络合物来检查天然视网膜发色团的位置。从发光复合物到视网膜发色团的能量转移在细胞质表面上比在细胞外表面上更有效,这表明天然发色团也在细胞质侧。从这些和先前的结果,我们得出结论,细菌视紫红质的生色团,无论是天然的还是还原的,都位于距紫色膜细胞质表面1.0±0.3 nm的深度处。

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