Ang Yan Shan, Yung Lin-Yue Lanry
Department of Chemical & Biomolecular Engineering, National University of Singapore, Singapore 117585, Singapore.
Anal Chem. 2023 Aug 15;95(32):12071-12079. doi: 10.1021/acs.analchem.3c02033. Epub 2023 Jul 31.
Protein-oligonucleotide conjugates are increasingly used as detection probes in biological applications such as proximity sensing and spatial biology. The preparation of high-quality conjugate probes as starting reagents is critical for achieving good and consistent performance, which we demonstrate via the DNA proximity assay (DPA) for the one-pot quantification of protein targets. We first established a complete conjugation and anion-exchange chromatography purification workflow to reproducibly obtain pure subpopulations of protein probes carrying a discrete number of oligonucleotide strands. A systematic study using the purified conjugate sub-populations confirmed that the order of conjugate (number of oligonucleotides per protein) and its purity (the absence of the unconjugated antibody) were important for ensuring optimal and reproducible assay performance. The streamlined workflow was then successfully used to conjugate a pair of universal DPA initiator oligonucleotides onto a wide range of binders including antibodies, nanobodies, and antigens which enabled the versatile detection of different types of proteins such as cytokines, total antibodies, and specific antibody isotypes. The good assay robustness (the inter-assay coefficient of variation lower than 5%) and linear calibration curve was achieved across all targets with just a single mix-and-incubate reaction step and a short reaction time of 30 min. We anticipate the streamlined protein-oligonucleotide probe preparation workflow developed in this work to have broad utility across applications leveraging the specificity of protein bio-recognition with the programmability of DNA hybridization.
蛋白质 - 寡核苷酸缀合物越来越多地用作生物应用中的检测探针,如邻近传感和空间生物学。制备高质量的缀合探针作为起始试剂对于实现良好且一致的性能至关重要,我们通过DNA邻近分析(DPA)对蛋白质靶标进行一锅法定量来证明这一点。我们首先建立了完整的缀合和阴离子交换色谱纯化工作流程,以可重复地获得携带离散数量寡核苷酸链的蛋白质探针的纯亚群。使用纯化的缀合亚群进行的系统研究证实,缀合物的顺序(每个蛋白质的寡核苷酸数量)及其纯度(不存在未缀合的抗体)对于确保最佳和可重复的分析性能很重要。然后,简化的工作流程成功地用于将一对通用的DPA引发剂寡核苷酸缀合到包括抗体、纳米抗体和抗原在内的多种结合物上,从而能够对不同类型的蛋白质进行通用检测,如细胞因子、总抗体和特定抗体亚型。只需一个混合孵育反应步骤和30分钟的短反应时间,所有靶标都实现了良好的分析稳健性(批间变异系数低于5%)和线性校准曲线。我们预计这项工作中开发的简化蛋白质 - 寡核苷酸探针制备工作流程将在利用蛋白质生物识别特异性与DNA杂交可编程性的应用中具有广泛的用途。