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用于 GPCR 配体筛选的生物素化非离子两亲聚合物。

Biotinylated non-ionic amphipols for GPCR ligands screening.

机构信息

Institut des Biomolécules Max Mousseron (UMR 5247 UM-CNRS-ENSCM) & Avignon University, Equipe Chimie Bioorganique et Systèmes amphiphiles, 301 rue Baruch de Spinoza, 84916 Avignon cedex 9, France.

Institut des Biomolécules Max Mousseron (UMR 5247 UM-CNRS-ENSCM), Faculté de pharmacie, 15 avenue Charles Flahault, 34000 Montpellier, France.

出版信息

Methods. 2020 Aug 1;180:69-78. doi: 10.1016/j.ymeth.2020.06.001. Epub 2020 Jun 4.

Abstract

We present herein the synthesis of biotin-functionalized polymers (BNAPols) that have been developed for the fixation of membrane proteins (MPs) onto surfaces. BNAPols were synthesized by free-radical polymerization of a tris(hydroxymethyl)acrylamidomethane (THAM)-derived amphiphilic monomer in the presence of a thiol-based transfer agent with an azido group. Then a Huisgen-cycloaddition reaction was performed with Biotin-(PEG)-alkyne that resulted in formation of the biotinylated polymers. The designed structure of BNAPols was confirmed by NMR spectroscopy, and a HABA/avidin assay was used for estimating the percentage of biotin grafted on the polymer end chain. The colloidal characterization of these biotin-functionalized polymers was done using both dynamic light scattering (DLS) and small angle X-ray scattering (SAXS) techniques. BNAPols were used to stabilize a model G protein-coupled receptor (GPCR), the human Growth Hormone Secretagogue Receptor (GHSR), out of its membrane environment. Subsequent immobilization of the BNAPols:GHSR complex onto a streptavidin-coated surface allowed screening of ligands based on their ability to bind the immobilized receptor. This opens the way to the use of biotinylated NAPols to immobilize functional, unmodified, membrane proteins, providing original sensor devices for multiple applications including innovative ligand screening assays.

摘要

我们在此介绍了一种用于将膜蛋白(MPs)固定到表面的生物素功能化聚合物(BNAPols)的合成方法。BNAPols 是通过在硫醇基转移剂存在下自由基聚合三羟甲基丙烯酰胺(THAM)衍生的两亲单体合成的,该转移剂带有叠氮基团。然后通过与生物素-(PEG)-炔反应进行 Huisgen 环加成反应,从而形成生物素化聚合物。通过核磁共振波谱法(NMR spectroscopy)确认了 BNAPols 的设计结构,并通过 HABA/亲和素测定法估计了聚合物末端链上接枝的生物素百分比。使用动态光散射(DLS)和小角 X 射线散射(SAXS)技术对这些生物素功能化聚合物进行胶体特性分析。BNAPols 用于稳定一种模型 G 蛋白偶联受体(GPCR),即人类生长激素释放肽受体(GHSR),使其脱离其膜环境。随后,将 BNAPols:GHSR 复合物固定在链霉亲和素涂覆的表面上,可根据配体结合固定受体的能力对其进行筛选。这为使用生物素化 NAPols 固定功能未修饰的膜蛋白开辟了道路,为包括创新配体筛选测定在内的多种应用提供了原始的传感器设备。

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