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Cytochrome c films formed on silane self-assembled monolayer derivatized surfaces

机译:在硅烷自组装单层衍生化表面上形成的细胞色素c膜

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摘要

Formation and characterization of well-organized protein film assemblies are of high interest due to potential applications in biomolecular devices. The hypothesis that a macroscopically ordered protein film can be formed by site-directed, covalent binding of a protein to an appropriately derivatized surface formed the basis for the reported studies. The molecular architecture chosen to address this hypothesis consisted of yeast cytochrome c, a heme protein containing a unique binding site, immobilized on a surface derivatized with a silane self-assembled monolayer, (SAM). A combination of two techniques: total internal reflectance fluorescence (TIRF), to measure fluorescence anisotropy, and integrated optical waveguide-attenuated total reflectance (IOW-ATR) spectroscopy, to measure absorbance linear dichroism, was used to probe the macroscopic order of the heme groups in the film assemblies. Epifluorescence microscopy and absorbance (in an IOW-ATR geometry) were used to probe the nature of the surface-protein interactions and to determine relative protein affinities for different SAM-derivatized surfaces. The molecular orientation distribution for yeast cytochrome c immobilized on a 100% thiol-terminated SAM was 67° ± 39°. Partial protein removal was observed under a variety of rinse conditions, indicating that multiple protein-surface interactions may have contributed to the wide distribution value. Relative binding affinity constants and protein-surface interactions are compared for yeast cytochrome c and horse heart cytochrome c on 100% thiol-capped, 100% hydroxyl-capped, and mixed SAM-modified surfaces. These studies were also extended to include a variant of yeast cytochrome c, Thr8Cys/Cys102Thr. Similar adsorption and removal trends were observed for all the protein-SAM combinations. The adsorption isotherms indicated that at least two binding processes occur during formation of each protein film, high and low affinity binding. Removal studies indicated that the adsorption process is only partially reversible. It was concluded that employing a site-directed immobilization strategy does not necessarily produce a well-ordered protein film.
机译:由于在生物分子装置中的潜在应用,因此组织良好的蛋白质膜组件的形成和表征引起了人们的极大兴趣。可以通过蛋白质与适当衍生化的表面的定点共价结合形成宏观有序蛋白质膜的假说构成了已报道研究的基础。为解决该假设而选择的分子结构由酵母细胞色素c(一种含有独特结合位点的血红素蛋白)组成,该蛋白质固定在硅烷自组装单分子层(SAM)衍生化的表面上。两种技术的组合:用于检测血红素的宏观顺序:用于测量荧光各向异性的全内反射荧光(TIRF)和用于测量吸收线性二色性的集成光波导衰减全反射(IOW-ATR)光谱电影集合中的组。使用落射荧光显微镜和吸光度(在IOW-ATR几何结构中)来探测表面蛋白相互作用的性质,并确定不同SAM衍生表面的相对蛋白亲和力。固定在100%巯基封端的SAM上的酵母细胞色素c的分子取向分布为67°±39°。在各种冲洗条件下均观察到部分蛋白质被去除,这表明多种蛋白质-表面相互作用可能有助于广泛的分布价值。比较了在100%巯基封端,100%羟基封端和混合SAM修饰的表面上酵母细胞色素c和马心脏细胞色素c的相对结合亲和常数和蛋白质-表面相互作用。这些研究还扩展到包括酵母细胞色素c的变体Thr8Cys / Cys102Thr。对于所有蛋白质-SAM组合,观察到相似的吸附和去除趋势。吸附等温线表明在每个蛋白质膜的形成过程中发生至少两个结合过程,即高亲和力和低亲和力结合。去除研究表明,吸附过程仅是部分可逆的。得出的结论是,采用定点固定策略不一定能产生有序的蛋白质膜。

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    Wood Laurie Lynne 1969-;

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  • 年度 1998
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  • 正文语种 en_US
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