Wu Diana, Feagin Trevor, Mage Peter, Rangel Alexandra, Wan Leighton, Kong Dehui, Li Anping, Coller John, Eisenstein Michael, Soh Hyongsok
Department of Bioengineering, Stanford University, Stanford, California 94305, United States.
Department of Radiology, Stanford University, Stanford, California 94305, United States.
Anal Chem. 2023 Feb 7;95(5):2645-2652. doi: 10.1021/acs.analchem.1c04777. Epub 2023 Jan 24.
Aptamers incorporating chemically modified bases can achieve superior affinity and specificity compared to natural aptamers, but their characterization remains a labor-intensive, low-throughput task. Here, we describe the "non-natural aptamer array" (N2A2) system, in which a minimally modified Illumina MiSeq instrument is used for the high-throughput generation and characterization of large libraries of base-modified DNA aptamer candidates based on both target binding and specificity. We first demonstrate the capability to screen multiple different base modifications to identify the optimal chemistry for high-affinity target binding. We next use N2A2 to generate aptamers that can maintain excellent specificity even in complex samples, with equally strong target affinity in both buffer and diluted human serum. For both aptamers, affinity was formally calculated with gold-standard binding assays. Given that N2A2 requires only minor mechanical modifications to the MiSeq, we believe that N2A2 offers a broadly accessible tool for generating high-quality affinity reagents for diverse applications.
与天然适体相比,掺入化学修饰碱基的适体能够实现更高的亲和力和特异性,但其表征仍然是一项劳动强度大、通量低的任务。在此,我们描述了“非天然适体阵列”(N2A2)系统,其中使用经过最小化修饰的Illumina MiSeq仪器,基于靶标结合和特异性,对大量碱基修饰的DNA适体候选文库进行高通量生成和表征。我们首先展示了筛选多种不同碱基修饰以确定高亲和力靶标结合的最佳化学方法的能力。接下来,我们使用N2A2生成即使在复杂样品中也能保持优异特异性的适体,在缓冲液和稀释的人血清中具有同样强的靶标亲和力。对于这两种适体,亲和力均通过金标准结合试验进行正式计算。鉴于N2A2只需要对MiSeq进行微小的机械改造,我们认为N2A2为生成适用于各种应用的高质量亲和试剂提供了一种广泛可用的工具。