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使用表面等离子体共振对人工拴系膜进行结合测定。

Binding assays with artificial tethered membranes using surface plasmon resonance.

作者信息

Wiltschi Birgit, Knoll Wolfgang, Sinner Eva-Kathrin

机构信息

Max Planck Institute for Biochemistry, Department of Membrane Biochemistry, D-82152 Martinsried, Germany.

出版信息

Methods. 2006 Jun;39(2):134-46. doi: 10.1016/j.ymeth.2006.05.007.

Abstract

Surface sensitive optical techniques based on surface plasmon resonance have become interesting for biosciences in the context of biorecognition and binding studies at functional surfaces. We use surface plasmon resonance spectroscopy (SPS) in combination with surface plasmon enhanced fluorescence spectroscopy (SPFS) for the characterization of interaction processes associated with biomembranes. The biological membrane is mimicked by a tethered membrane consisting of a planar lipid bilayer attached to a gold surface via a hydrophilic anchor peptide. The interaction between membrane-bound hydrophobic compounds and free hydrophilic molecules is monitored in real-time and with high sensitivity and selectivity by combined SPS/SPFS. In this review we shortly discuss the principles of surface plasmon resonance and its utilization in SPS and SPFS. A detailed description of the required instrumentation for combined SPS and SPFS is presented. Furthermore, we outline the design of a binding assay with a tethered bilayer and the procedure of the artificial membrane system built-up is delineated. We also present examples that demonstrate the potential of combined SPS/SPFS assays with artificial tethered membranes. The method provides insight into the interaction of integral membrane proteins with various hydrophilic ligands and the specific recognition of small lipophilic molecules by soluble proteins.

摘要

基于表面等离子体共振的表面敏感光学技术,在功能表面的生物识别和结合研究背景下,已引起生物科学领域的关注。我们将表面等离子体共振光谱法(SPS)与表面等离子体增强荧光光谱法(SPFS)结合使用,以表征与生物膜相关的相互作用过程。生物膜由通过亲水性锚定肽附着在金表面的平面脂质双层组成的拴系膜模拟。通过组合SPS/SPFS实时监测膜结合的疏水性化合物与游离亲水性分子之间的相互作用,具有高灵敏度和选择性。在本综述中,我们简要讨论表面等离子体共振的原理及其在SPS和SPFS中的应用。详细介绍了组合SPS和SPFS所需的仪器设备。此外,我们概述了拴系双层结合测定的设计,并描述了人工膜系统的构建过程。我们还给出了一些示例,展示了组合SPS/SPFS测定与人工拴系膜的潜力。该方法有助于深入了解整合膜蛋白与各种亲水性配体的相互作用,以及可溶性蛋白对小亲脂性分子的特异性识别。

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