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用于复杂蛋白质组分析的重组抗体微阵列设计:样品标记标签和固相支持物的选择

Design of recombinant antibody microarrays for complex proteome analysis: choice of sample labeling-tag and solid support.

作者信息

Wingren Christer, Ingvarsson Johan, Dexlin Linda, Szul Dominika, Borrebaeck Carl A K

机构信息

Department of Immunotechnology, BMC D13, Lund University, Lund, Sweden.

出版信息

Proteomics. 2007 Sep;7(17):3055-65. doi: 10.1002/pmic.200700025.

Abstract

Antibody-based microarray is a novel technology with great potential within high-throughput proteomics. The process of designing high-performing antibody (protein) microarrays has, however, turned out to be a challenging process. In this study, we have developed further our human recombinant single-chain variable-fragment (scFv) antibody microarray methodology by addressing two crucial technological issues, choice of sample labeling-tag and solid support. We examined the performance of a range of dyes in a one- or two-color approach on a selection of solid supports providing different surface and coupling chemistries, and surface structures. The set-ups were evaluated in terms of sensitivity, specificity, and selectivity. The results showed that a one-color approach, based on NHS-biotin (or ULS-biotin) labeling, on black polymer Maxisorb slides (or Nexterion slide H) was the superior approach for targeting low-abundant (pg/mL) analytes in nonfractionated, complex proteomes, such as human serum or crude cell supernatants. Notably, microarrays displaying adequate spot morphologies, high S/Ns, minimized nonspecific binding, and most importantly a high selectivity, specificity, and sensitivity (>or=fM range) were obtained. Taken together, we have designed the first generation of a high-performing recombinant scFv antibody microarray technology platform on black polymer Maxisorb slides for sensitive profiling of low-abundant analytes in nonfractionated biotinylated complex proteomes.

摘要

基于抗体的微阵列是一种在高通量蛋白质组学领域具有巨大潜力的新技术。然而,设计高性能抗体(蛋白质)微阵列的过程已证明是一个具有挑战性的过程。在本研究中,我们通过解决两个关键技术问题,即样品标记标签的选择和固相载体,进一步改进了我们的人重组单链可变片段(scFv)抗体微阵列方法。我们在一系列提供不同表面、偶联化学和表面结构的固相载体上,以单色或双色方法研究了多种染料的性能。从灵敏度、特异性和选择性方面对这些设置进行了评估。结果表明,基于NHS-生物素(或ULS-生物素)标记的单色方法,在黑色聚合物Maxisorb载玻片(或Nexterion载玻片H)上,是针对未分级复杂蛋白质组(如人血清或粗细胞上清液)中低丰度(pg/mL)分析物的优越方法。值得注意的是,获得了具有足够斑点形态、高信噪比、最小化非特异性结合,且最重要的是具有高选择性、特异性和灵敏度(≥fM范围)的微阵列。综上所述,我们在黑色聚合物Maxisorb载玻片上设计了第一代高性能重组scFv抗体微阵列技术平台,用于对未分级生物素化复杂蛋白质组中的低丰度分析物进行灵敏分析。

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