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通过缺口连接反应和表面杂交检测实现高特异性和高灵敏度的电化学基因分型。

Highly specific and sensitive electrochemical genotyping via gap ligation reaction and surface hybridization detection.

作者信息

Huang Yong, Zhang Yan-Li, Xu Xiangmin, Jiang Jian-Hui, Shen Guo-Li, Yu Ru-Qin

机构信息

State Key Laboratory of Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, PR China.

出版信息

J Am Chem Soc. 2009 Feb 25;131(7):2478-80. doi: 10.1021/ja808700d.

Abstract

This paper developed a novel electrochemical genotyping strategy based on gap ligation reaction with surface hybridization detection. This strategy utilized homogeneous enzymatic reactions to generate molecular beacon-structured allele-specific products that could be cooperatively annealed to capture probes stably immobilized on the surface via disulfide anchors, thus allowing ultrasensitive surface hybridization detection of the allele-specific products through redox tags in close proximity to the electrode. Such a unique biphasic architecture provided a universal methodology for incorporating enzymatic discrimination reactions in electrochemical genotyping with desirable reproducibility, high efficiency and no interferences from interficial steric hindrance. The developed technique was demonstrated to show intrinsic high sensitivity for direct genomic analysis, and excellent specificity with discriminativity of single nucleotide variations.

摘要

本文基于间隙连接反应和表面杂交检测开发了一种新型电化学基因分型策略。该策略利用均相酶促反应生成分子信标结构的等位基因特异性产物,这些产物可通过二硫键锚定与稳定固定在表面的捕获探针协同退火,从而通过靠近电极的氧化还原标签对等位基因特异性产物进行超灵敏表面杂交检测。这种独特的双相结构为在电化学基因分型中纳入酶促鉴别反应提供了一种通用方法,具有良好的重现性、高效率且不受界面空间位阻的干扰。所开发的技术被证明对直接基因组分析具有内在的高灵敏度,并且对单核苷酸变异具有出色的特异性和鉴别能力。

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