适体
化学
DNA
离解常数
计算生物学
突变
荧光各向异性
生物化学
免疫系统
抗体
线性范围
荧光
分子生物学
靶蛋白
组合化学
生物物理学
指数富集配体系统进化
检出限
A-DNA
突变
腺苷脱氨酶
基因亚型
DNA测序
核酸
竞争性约束
色谱法
癌症生物标志物
胞苷脱氨酶
生物传感器
液体活检
蛋白质工程
作者
Yifan Su,Yuchao Zhang,Qin Wu,Edwin Cheung,Yilin Wei,Weihong Tan
标识
DOI:10.1021/acs.analchem.5c06827
摘要
Adenosine deaminase acting on RNA1 (ADAR1), particularly its interferon-inducible isoform ADAR1p150, is a key immune checkpoint in cancer and a promising prognostic biomarker. However, isoform-specific detection remains challenging. Here, we developed a sensitive detection platform for ADAR1p150 by selecting a high-affinity aptamer targeting its unique Zα domain using Blocker-SELEX, a strategy integrating structure-guided virtual screening and iterative sequence optimization based on affinity and competitive fluorescence polarization evaluation. The evolved aptamer, Zα_LS_11, bound the Zα domain with a dissociation constant ( K D ) of 4.76 ± 2.91 nM. NMR titration and mutagenesis confirmed that Zα_LS_11 engages the target epitope, with the T191A mutation drastically reducing the affinity. The aptamer showed high specificity for ADAR1p150 over unrelated proteins and successfully captured endogenous ADAR1. We then constructed an aptamer–antibody sandwich assay, where ADAR1p150 is captured by the anti-ADAR1p150 antibody on magnetic beads and detected by an elongated aptamer (Zα_LS_20) via qPCR. This platform exhibited a linear detection range from 62.5 to 4000 ng/mL and reliably distinguished ADAR1p150 expression in cell lysates with or without IFNγ stimulation. Our work provides a robust, quantitative tool for monitoring ADAR1p150 dynamics, offering potential for assessing tumor immune status and prognosis.
科研通智能强力驱动
Strongly Powered by AbleSci AI