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Ultra-High Vacuum Surface Analysis Study of Rhodopsin Incorporation into Supported Lipid Bilayers

机译:视紫红质掺入脂质双分子层的超高真空表面分析研究

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摘要

Planar supported lipid bilayers that are stable under ambient atmospheric and ultra-high-vacuum conditions were prepared by cross-linking polymerization of bis-sorbylphosphatidylcholine (bis-SorbPC). X-ray photoelectron spectroscopy (XPS) and time-of-flight secondary ion mass spectrometry (ToF-SIMS) were employed to investigate bilayers that were cross-linked using either redox-initiated radical polymerization or ultraviolet photopolymerization. The redox method yields a more structurally intact bilayer; however, the UV method is more compatible with incorporation of transmembrane proteins. UV polymerization was therefore used to prepare cross-linked bilayers with incorporated bovine rhodopsin, a light-activated, G-protein-coupled receptor (GPCR). A previous study (Subramaniam, V.; Alves, I. D.; Salgado, G. F. J.; Lau, P. W.; Wysocki, R. J.; Salamon, Z.; Tollin, G.; Hruby, V. J.; Brown, M. F.; Saavedra, S. S. J. Am. Chem. Soc. >2005, 127, 5320–5321) showed that rhodopsin retains photoactivity after incorporation into UV-polymerized bis-SorbPC, but did not address how the protein is associated with the bilayer. In this study, we show that rhodopsin is retained in supported bilayers of poly(bis-SorbPC) under ultra-high-vacuum conditions, on the basis of the increase in the XPS nitrogen concentration and the presence of characteristic amino acid peaks in the ToF-SIMS data. Angle-resolved XPS data show that the protein is inserted into the bilayer, rather than adsorbed on the bilayer surface. This is the first study to demonstrate the use of ultra-high-vacuum techniques for structural studies of supported proteolipid bilayers.
机译:通过双-山梨糖基磷脂酰胆碱(bis-SorbPC)的交联聚合反应制备了在环境大气和超高真空条件下稳定的平面支撑脂质双层。使用X射线光电子能谱(XPS)和飞行时间二次离子质谱(ToF-SIMS)来研究使用氧化还原引发的自由基聚合或紫外光聚合进行交联的双层。氧化还原法产生了一个结构上更完整的双层。然而,紫外线法与跨膜蛋白的结合更兼容。因此,UV聚合用于制备掺入牛视紫红质的光交联的双层蛋白,该蛋白是光活化的G蛋白偶联受体(GPCR)。先前的研究(Subramaniam,V .; Alves,ID; Salgado,GFJ; Lau,PW; Wysocki,RJ; Salamon,Z .; Tollin,G .; Hruby,VJ; Brown,MF; Saavedra,SSJ Am.Chem。 Soc。> 2005 ,127,5320–5321)显示,视紫红质在掺入紫外线聚合的bis-SorbPC中后仍保留了光活性,但未解决蛋白质与双层的关系。在这项研究中,我们表明,在XPS氮浓度增加和ToF中存在特征性氨基酸峰的基础上,视紫红质在超高真空条件下保留在支持的poly(bis-SorbPC)双层中。 -SIMS数据。角度解析XPS数据显示蛋白质插入双层中,而不是吸附在双层表面上。这是第一项证明使用超高真空技术进行支持的蛋白脂质双层结构研究的研究。

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