首页> 美国卫生研究院文献>Biophysical Journal >Coupled plasmon-waveguide resonance spectroscopy studies of the cytochrome b6f/plastocyanin system in supported lipid bilayer membranes.
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Coupled plasmon-waveguide resonance spectroscopy studies of the cytochrome b6f/plastocyanin system in supported lipid bilayer membranes.

机译:脂质双分子膜中细胞色素b6f /质体蓝蛋白系统的等离激元-波导共振光谱研究。

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摘要

The incorporation of cytochrome (cyt) b6f into a solid-supported planar egg phosphatidylcholine (PC) bilayer membrane and complex formation with plastocyanin have been studied by a variant of surface plasmon resonance called coupled plasmon-waveguide resonance (CPWR) spectroscopy, developed in our laboratory. CPWR combines greatly enhanced sensitivity and spectral resolution with direct measurement of anisotropies in refractive index and optical extinction coefficient, and can therefore probe structural properties of lipid-protein and protein-protein interactions. Cyt b6f incorporation into the membrane proceeds in two stages. The first occurs at low protein concentration and is characterized by an increase in total proteolipid mass without significant changes in the molecular order of the system, as demonstrated by shifts of the resonance position to larger incident angles without changing the refractive index anisotropy. The second stage, occurring at higher protein concentrations, results in a decrease in both the mass density and the molecular order of the system, evidenced by shifts of the resonance position to smaller incident angles and a large decrease in the membrane refractive index anisotropy. Plastocyanin can bind to such a proteolipid system in three different ways. First, the addition of plastocyanin before the second stage of b6f incorporation begins results in complex formation between the two proteins with a KD of approximately 10 microM and induces structural changes in the membrane that are similar to those occurring during the second stage of complex incorporation. The addition of larger amounts of plastocyanin under these conditions leads to nonspecific binding to the lipid phase with a KD of approximately 180 microM. Finally, the addition of plastocyanin after the completion of the second phase of b6f incorporation results in tighter binding between the two proteins (KD approximately 1 microM). Quantitation of the binding stoichiometry indicates that two plastocyanin molecules bind tightly to the dimeric form of the cyt b6f complex, assuming random insertion of the cytochrome into the bilayer. The structural basis for these results and formation of the proteolipid membrane are discussed.
机译:我们已经开发了一种称为耦合等离子体激元-波导共振(CPWR)的表面等离子体激元共振,研究了将细胞色素(cyt)b6f掺入固体支持的卵磷脂卵磷脂(PC)双层膜中并与质体蓝素形成复合物的问题。实验室。 CPWR结合了大大提高的灵敏度和光谱分辨率以及直接测量折射率和消光系数各向异性的功能,因此可以探测脂质-蛋白质和蛋白质-蛋白质相互作用的结构特性。 Cyt b6f进入膜的过程分为两个阶段。第一次发生在蛋白质浓度低的情况下,其特征是总蛋白脂质质量增加而系统分子顺序没有明显变化,如共振位置向较大入射角的变化而不改变折射率各向异性所证明的。第二阶段发生在较高的蛋白质浓度下,导致系统的质量密度和分子顺序均下降,这通过共振位置向较小入射角的偏移和膜折射率各向异性的大幅度降低来证明。藻蓝蛋白可以三种不同方式结合至这种蛋白脂质系统。首先,在b6f掺入的第二阶段开始之前添加质体蓝素会导致两种蛋白质之间形成复杂的复合物,其KD约为10 microM,并引起膜结构变化,类似于复合物掺入第二阶段发生的变化。在这些条件下添加大量的质体蓝蛋白会导致非特异性结合脂质相,KD约为180 microM。最后,在完成b6f掺入的第二阶段后添加质体蓝素会导致两种蛋白质之间的结合更紧密(KD约为1 microM)。结合化学计量的定量表明,假定细胞色素随机插入双层,两个质体蓝蛋白分子紧密结合cyt b6f复合物的二聚体形式。讨论了这些结果的结构基础和蛋白脂膜的形成。

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