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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Surface-Enhanced Infrared Absorption Spectroscopy (SEIRAS) of Light-Activated Photosynthetic Reaction Centers from Rhodobocter sphaeroides Reconstituted in a Biomimetic Membrane System
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Surface-Enhanced Infrared Absorption Spectroscopy (SEIRAS) of Light-Activated Photosynthetic Reaction Centers from Rhodobocter sphaeroides Reconstituted in a Biomimetic Membrane System

机译:仿生膜系统中重构的球形球形杜鹃的光活化光合反应中心的表面增强红外吸收光谱(SEIRAS)

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Surface-enhanced IR absorption spectroscopy (SEIRAS) in the ATR configuration has been performed on reaction centers (RCs) from & sphaeroides. Surface-enhancement is achieved by a thin, structured gold film present on the surface of an ATR crystal. Purified RCs are immobilized as a monolayer on top of the gold film via a poly his-tag engineered to the C-terminal end of the M subunit. Subsequently, the RCs are reconstituted into a lipid bilayer by in situ dialysis. Light-minus-dark absorbance spectra were recorded under continuous illumination using the spectrum in the dark as the reference. A number of strong bands have been observed indicating the excitation of the special pair as well as alterations of quinone/quinol species. Spectra were recorded at different time intervals with and without liposoluble Q_(10) coreconstituted into the lipid phase. A steady (photostationary) state was approached slowly and bands were found to increase or decrease reversibly on illumination and relaxation. Tentative assignments were made for some bands, based on previous FTIR measurements. The long time scale of these processes was tentatively explained in terms of interprotein reactions of RC molecules.
机译:在ATR构型的表面增强型IR吸收光谱(SEIRAS)上,已对来自&sphaeroides的反应中心(RC)进行了分析。表面增强是通过在ATR晶体表面上存在一层结构化的薄金膜来实现的。纯化的RC通过设计为M亚基C末端的多聚组氨酸标签以单层形式固定在金膜的顶部。随后,通过原位透析将RCs重构为脂质双层。使用在黑暗中的光谱作为参考,在连续照明下记录光-暗-吸收光谱。观察到许多强带,表明该特殊对的激发以及醌/喹诺尔物质的改变。在有和没有脂溶性Q_(10)核组成脂质相的情况下,在不同的时间间隔记录光谱。缓慢接近稳态(光平稳)状态,发现条带在照明和松弛时可逆地增加或减少。根据以前的FTIR测量结果,对某些频段进行了临时分配。这些过程的长期规模暂时是根据RC分子的蛋白间反应来解释的。

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