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Streptavidin binding to biotinylated lipid layers on solid supports. A neutron reflection and surface plasmon optical study.

机译:链霉亲和素与固体支持物上生物素化脂质层的结合。中子反射和表面等离激元光学研究。

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摘要

Neutron reflection and surface plasmon optical experiments have been performed to evaluate structural data of the interfacial binding reaction between the protein streptavidin and a solid-supported lipid monolayer partly functionalized by biotin moieties. Since both experimental techniques operate in a total internal reflection geometry at a substrate/solution interface, identical sample architectures allow for a direct comparison between the results obtained with these two recently developed methods. It is found that a monomolecular layer of dipalmitoyllecithin doped with 5 mol% of a biotinylated-phosphatidylethanolamine shows a thickness of d1 approximately (3.4 +/- 0.5) nm. Binding of streptavidin to the biotin groups results in an overall layer thickness of d = (5.9 + 0.5) nm that demonstrates the formation of a well-ordered protein monolayer with the (biotin+spacer) units of the functionalized lipids being fully embedded into the binding pocket of the proteins. It is demonstrated by model calculations that a more detailed picture of the internal structure of this supramolecular assembly can only be obtained if one uses deuterated lipid molecules, thus generating a high contrast between individual layers.
机译:已经进行了中子反射和表面等离激元光学实验,以评估蛋白链霉亲和素与部分被生物素部分功能化的固体支持脂质单层之间的界面结合反应的结构数据。由于两种实验技术均在基材/溶液界面处以全内反射几何形状进行操作,因此相同的样品架构可直接比较这两种最新开发的方法获得的结果。发现掺杂有5mol%的生物素化的磷脂酰乙醇胺的二铝卵磷脂的单分子层显示出d1的厚度约为(3.4 +/- 0.5)nm。链霉亲和素与生物素基团的结合导致d =(5.9 + 0.5)nm的总层厚,表明形成了功能良好的脂质的(biotin + spacer)单元完全包埋在蛋白质中的有序蛋白质单层。蛋白质的结合口袋。通过模型计算证明,只有在使用氘化脂质分子的情况下,才能获得此超分子组装体内部结构的更详细的图片,从而在各个层之间产生高对比度。

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