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Development of Phage-Based Antibody Fragment Reagents for Affinity Enrichment of Bacterial Immunoglobulin G Binding Proteins.

机译:基于噬菌体的抗体片段试剂的开发,用于亲和富集细菌免疫球蛋白G结合蛋白。

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摘要

Disease and death caused by bacterial infections are global health problems. Effective bacterial strategies are required to promote survival and proliferation within a human host, and it is important to explore how this adaption occurs. However, the detection and quantification of bacterial virulence factors in complex biological samples are technically demanding challenges. These can be addressed by combining targeted affinity enrichment of antibodies with the sensitivity of liquid chromatography-selected reaction monitoring mass spectrometry (LC-SRM MS). However, many virulence factors have evolved properties that make specific detection by conventional antibodies difficult. We here present an antibody format that is particularly well suited for detection and analysis of immunoglobulin G (IgG)-binding virulence factors. As proof of concept, we have generated single chain fragment variable (scFv) antibodies that specifically target the IgG-binding surface proteins M1 and H of Streptococcus pyogenes. The binding ability of the developed scFv is demonstrated against both recombinant soluble protein M1 and H as well as the intact surface proteins on a wild-type S. pyogenes strain. Additionally, the capacity of the developed scFv antibodies to enrich their target proteins from both simple and complex backgrounds, thereby allowing for detection and quantification with LC-SRM MS, was demonstrated. We have established a workflow that allows for affinity enrichment of bacterial virulence factors.
机译:由细菌感染引起的疾病和死亡是全球健康问题。需要有效的细菌策略来促进人类宿主内的存活和增殖,并且探索这种适应如何发生是很重要的。然而,在复杂的生物样品中细菌毒力因子的检测和定量在技术上是艰巨的挑战。这些问题可以通过将抗体的靶向亲和力富集与液相色谱选择的反应监测质谱(LC-SRM MS)的灵敏度相结合来解决。然而,许多毒力因子已经进化出特性,这使得常规抗体的特异性检测变得困难。我们在这里提出一种抗体形式,特别适合检测和分析免疫球蛋白G(IgG)结合毒力因子。作为概念证明,我们已经生成了特异性靶向化脓性链球菌的IgG结合表面蛋白M1和H的单链片段可变(scFv)抗体。证明了开发的scFv对重组可溶性蛋白M1和H以及野生型化脓性链球菌菌株上完整的表面蛋白的结合能力。此外,还证明了开发的scFv抗体具有从简单和复杂背景中富集其靶蛋白的能力,从而可以使用LC-SRM MS进行检测和定量。我们已经建立了允许细菌毒力因子亲和力富集的工作流程。

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