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细菌视紫红质单层与溴端基固体支持物的共价连接:制备、表征及蛋白质稳定性

Covalent attachment of bacteriorhodopsin monolayer to bromo-terminated solid supports: preparation, characterization, and protein stability.

作者信息

Jin Yongdong, Girshevitz Olga, Friedman Noga, Ron Izhar, Cahen David, Sheves Mordechai

机构信息

Department of Organic Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Chem Asian J. 2008 Jul 7;3(7):1146-55. doi: 10.1002/asia.200700403.

Abstract

The interfacing of functional proteins with solid supports and the study of related protein-adsorption behavior are promising and important for potential device applications. In this study, we describe the preparation of bacteriorhodopsin (bR) monolayers on Br-terminated solid supports through covalent attachment. The bonding, by chemical reaction of the exposed free amine groups of bR with the pendant Br group of the chemically modified solid surface, was confirmed both by negative AFM results obtained when acetylated bR (instead of native bR) was used as a control and by weak bands observed at around 1610 cm(-1) in the FTIR spectrum. The coverage of the resultant bR monolayer was significantly increased by changing the pH of the purple-membrane suspension from 9.2 to 6.8. Although bR, which is an exceptionally stable protein, showed a pronounced loss of its photoactivity in these bR monolayers, it retained full photoactivity after covalent binding to Br-terminated alkyls in solution. Several characterization methods, including atomic force microscopy (AFM), contact potential difference (CPD) measurements, and UV/Vis and Fourier transform infrared (FTIR) spectroscopy, verified that these bR monolayers behaved significantly different from native bR. Current-voltage (I-V) measurements (and optical absorption spectroscopy) suggest that the retinal chromophore is probably still present in the protein, whereas the UV/Vis spectrum suggests that it lacks the characteristic covalent protonated Schiff base linkage. This finding sheds light on the unique interactions of biomolecules with solid surfaces and may be significant for the design of protein-containing device structures.

摘要

功能性蛋白质与固体支持物的连接以及相关蛋白质吸附行为的研究对于潜在的器件应用具有重要意义且前景广阔。在本研究中,我们描述了通过共价连接在溴端基固体支持物上制备细菌视紫红质(bR)单层膜的方法。通过将乙酰化的bR(而非天然bR)用作对照时获得的负原子力显微镜(AFM)结果以及傅里叶变换红外光谱(FTIR)中在约1610 cm⁻¹处观察到的弱带,证实了bR暴露的游离胺基与化学修饰固体表面的悬垂溴基团之间的化学反应形成的键合。通过将紫膜悬浮液的pH从9.2变为6.8,所得bR单层膜的覆盖率显著增加。尽管bR是一种异常稳定的蛋白质,但在这些bR单层膜中其光活性明显丧失,而在溶液中与溴端基烷基共价结合后它保留了完全的光活性。包括原子力显微镜(AFM)、接触电势差(CPD)测量以及紫外/可见和傅里叶变换红外(FTIR)光谱在内的几种表征方法证实,这些bR单层膜的行为与天然bR有显著差异。电流-电压(I-V)测量(以及光吸收光谱)表明视网膜发色团可能仍存在于蛋白质中,而紫外/可见光谱表明它缺乏特征性的共价质子化席夫碱连接。这一发现揭示了生物分子与固体表面的独特相互作用,可能对含蛋白质器件结构的设计具有重要意义。

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