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首页> 外文期刊>Biomaterials >The structural orientation of antibody layers bound to engineered biosensor surfaces.
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The structural orientation of antibody layers bound to engineered biosensor surfaces.

机译:抗体层的结构取向与工程化的生物传感器表面结合。

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摘要

This paper describes a membrane protein array that binds immunoglobulin G at its constant regions whilst leaving the variable regions free to bind antigen. The scaffold of the array is the transmembrane domain of outer membrane protein A (tOmpA) from Escherichia coli engineered to assemble as an oriented monolayer on gold surfaces via a single cysteine residue. Other protein domains can be fused to the N and C termini of the scaffold. In this study we use circularly permuted ctOmpA fused to two Z domains of Staphylococcus aureus protein A (ZZctOmpA) to create the immunoglobulin G-binding array. The solution structure of the engineered proteins was assessed by circular dichroism spectroscopy. Assembly of the array, attachment of antibodies and antigen binding were measured using surface plasmon resonance and neutron reflection. Compared to mouse IgG2, polyclonal IgG from rabbit bound very strongly to ZZctOmpA and the dissociation of the immunoglobulin was slow enough to allow neutron reflection studies of the assembled layer with antigen. Using both magnetic and isotopic contrasts a complete layer by layer model was defined which revealed that the 223 A high layer contains antibodies in an upright orientation.
机译:本文描述了一种膜蛋白阵列,该膜蛋白在其恒定区结合免疫球蛋白G,而使可变区自由结合抗原。阵列的支架是大肠杆菌的外膜蛋白A(tOmpA)的跨膜结构域,经过工程改造后可以通过单个半胱氨酸残基在金表面上组装成定向的单层膜。可以将其他蛋白质结构域融合到支架的N和C末端。在这项研究中,我们使用与金黄色葡萄球菌蛋白A(ZZctOmpA)的两个Z结构域融合的圆形排列的ctOmpA来创建免疫球蛋白G结合阵列。工程蛋白质的溶液结构通过圆二色光谱法评估。使用表面等离振子共振和中子反射来测量阵列的组装,抗体的附着和抗原结合。与小鼠IgG2相比,来自兔的多克隆IgG与ZZctOmpA的结合非常牢固,并且免疫球蛋白的解离足够缓慢,可以对带有抗原的组装层进行中子反射研究。使用磁性对比和同位素对比,定义了完整的逐层模型,该模型揭示了223 A高层包含以直立方向排列的抗体。

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