Andresen Heiko, Grötzinger Carsten, Zarse Kim, Kreuzer Oliver J, Ehrentreich-Förster Eva, Bier Frank F
Fraunhofer Institute for Biomedical Engineering, Department of Molecular Bioanalytics & Bioelectronics, Potsdam-Nuthetal, Germany.
Proteomics. 2006 Mar;6(5):1376-84. doi: 10.1002/pmic.200500343.
Peptide microarrays displaying biologically active small synthetic peptides in a high-density format provide an attractive technology to probe complex samples for the presence and/or function of protein analytes. We present a new approach for manufacturing functional peptide microarrays for molecular immune diagnostics. Our method relies on the efficiency of site-specific solution-phase coupling of biotinylated synthetic peptides to NeutrAvidin (NA) and localized microdispensing of peptide-NA-complexes onto activated glass surfaces. Antibodies are captured in a sandwich manner between surface immobilized peptide probes and fluorescence-labeled secondary antibodies. Our work includes a total of 54 peptides derived from immunodominant linear epitopes of the T7 phage capsid protein, Herpes simplex virus glycoprotein D, c-myc protein, and three domains of the Human coronavirus polymerase polyprotein and their cognate mAbs. By using spacer molecules of different type and length for NA-mediated peptide presentation, we show that the incorporation of a minimum spacer length is imperative for antibody binding, whereas the peptide immobilization direction has only secondary importance for antibody affinity and binding. We further demonstrate that the peptide array is capable of detecting low-picomolar concentrations of mAbs in buffered solutions and diluted human serum with high specificity.
以高密度形式展示生物活性小合成肽的肽微阵列提供了一种有吸引力的技术,用于探测复杂样品中蛋白质分析物的存在和/或功能。我们提出了一种制造用于分子免疫诊断的功能性肽微阵列的新方法。我们的方法依赖于将生物素化的合成肽位点特异性溶液相偶联到中性抗生物素蛋白(NA)的效率,以及将肽-NA复合物局部微量分配到活化的玻璃表面上。抗体以夹心方式捕获在表面固定的肽探针和荧光标记的二抗之间。我们的工作包括总共54种肽,它们来源于T7噬菌体衣壳蛋白、单纯疱疹病毒糖蛋白D、c-myc蛋白以及人冠状病毒聚合酶多聚蛋白的三个结构域的免疫显性线性表位及其同源单克隆抗体。通过使用不同类型和长度的间隔分子进行NA介导的肽呈递,我们表明,纳入最小间隔长度对于抗体结合至关重要,而肽固定方向对抗体亲和力和结合仅具有次要重要性。我们进一步证明,该肽阵列能够以高特异性检测缓冲溶液和稀释人血清中低皮摩尔浓度的单克隆抗体。