DNA
动力学
核酸热力学
反向
杂交探针
核酸
化学
计算生物学
生物
生物化学
物理
基序列
数学
几何学
量子力学
作者
Xin Chen,Na Liu,Liquan Liu,Wei Chen,Na Chen,Meng Lin,Jiaju Xu,Xing Zhou,Hongbo Wang,Meiping Zhao,Xianjin Xiao
标识
DOI:10.1038/s41467-019-12593-9
摘要
Abstract Sensitive and specific DNA hybridization is essential for nucleic acid chemistry. Competitive composition of probe and blocker has been the most adopted probe design for its relatively high sensitivity and specificity. However, the sensitivity and specificity were inversely correlated over the length and concentration of the blocker strand, making the optimization process cumbersome. Herein, we construct a theoretical model for competitive DNA hybridization, which disclose that both the thermodynamics and kinetics contribute to the inverse correlation. Guided by this, we invent the 4-way Strand Exchange LEd Competitive DNA Testing (SELECT) system, which breaks up the inverse correlation. Using SELECT, we identified 16 hot-pot mutations in human genome under uniform conditions, without optimization at all. The specificities were all above 140. As a demonstration of the clinical practicability, we develop probe systems that detect mutations in human genomic DNA extracted from ovarian cancer patients with a detection limit of 0.1%.
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