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磷脂作为直接共价偶联的替代物:用于蛋白质识别和纯化的纳米多孔氧化铝的表面功能化。

Phospholipids as an alternative to direct covalent coupling: surface functionalization of nanoporous alumina for protein recognition and purification.

机构信息

Institute of Organic and Biomolecular Chemistry, Tammannstr. 2, 37077 Göttingen, Germany.

Institute of Physical Chemistry, Tammannstr. 6, 37077 Göttingen, Germany.

出版信息

J Colloid Interface Sci. 2012 Jan 15;366(1):57-63. doi: 10.1016/j.jcis.2011.09.067. Epub 2011 Oct 5.

DOI:10.1016/j.jcis.2011.09.067
PMID:22033154
Abstract

Anodic aluminum oxide (AAO) substrates with aligned, cylindrical, non-intersecting pores with diameters of 75 nm and depths of 3.5 or 10 μm were functionalized with lipid monolayers harboring different receptor lipids. AAO was first functionalized with dodecyl-trichlorosilane, followed by fusion of small unilamellar vesicles (SUVs) forming a lipid monolayer. The SUVs' lipid composition was transferred onto the AAO surface, allowing us to control the surface receptor density. Owing to the optical transparency of the AAO, the overall vesicle spreading process and subsequent protein binding to the receptor-doped lipid monolayers could be investigated in situ by optical waveguide spectroscopy (OWS). SUV spreading occurred at the pore-rim interface, followed by lateral diffusion of lipids within the pore-interior surface until homogeneous coverage was achieved with a lipid monolayer. The functionality of the system was demonstrated through streptavidin binding onto a biotin-DOPE containing POPC membrane, showing maximum protein coverage at 10 mol% of biotin-DOPE. The system enabled us to monitor in real-time the selective extraction of two histidine-tagged proteins, PIGEA14 (14 kDa) and ezrin (70 kDa), directly from cell lysate solutions using a DOGS-NTA(Ni)/DOPC (1:9) membrane. The purification process including protein binding and elution was monitored by OWS and confirmed by SDS-PAGE.

摘要

具有 75nm 直径和 3.5 或 10μm 深度的平行、圆柱形、不相交的孔的阳极氧化铝 (AAO) 基底用带有不同受体脂质的脂质单层进行功能化。AAO 首先用十二烷基三氯硅烷功能化,然后融合形成脂质单层的小单层囊泡 (SUV)。SUV 的脂质组成被转移到 AAO 表面,使我们能够控制表面受体密度。由于 AAO 的光学透明性,整个囊泡扩展过程和随后的蛋白质与受体掺杂脂质单层的结合可以通过光波导光谱 (OWS) 原位研究。SUV 在孔缘界面处扩展,然后在孔内表面内的脂质横向扩散,直到达到均匀覆盖的脂质单层。该系统的功能通过生物素-DOPE 存在于 POPC 膜中的链霉亲和素结合来证明,在 10mol%的生物素-DOPE 时显示出最大的蛋白质覆盖率。该系统使我们能够使用 DOGS-NTA(Ni)/DOPC(1:9)膜实时监测两种组氨酸标记蛋白 PIGEA14(14kDa)和 ezrin(70kDa)直接从细胞裂解物溶液中选择性提取。OWS 监测到蛋白质结合和洗脱的纯化过程,并通过 SDS-PAGE 进行确认。

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