适体
化学
表征(材料科学)
DNA
纳米技术
组合化学
计算生物学
分子生物学
生物化学
材料科学
生物
作者
Diana Wu,Trevor Feagin,Peter L. Mage,Alexandra E. Rangel,Leighton Wan,Dehui Kong,Anping Li,John A. Coller,Michael Eisenstein,H. Tom Soh
标识
DOI:10.1021/acs.analchem.1c04777
摘要
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.
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