Hao Huimin, Li Ye, Yang Bin, Lou Shuyan, Guo Zihua, Lu Weiyi
Key Laboratory of Environmentally Friendly Chemistry and Applications of Ministry of Education, College of Chemistry, Xiangtan University, Xiangtan410005, P. R. China.
Anal Chem. 2023 Feb 7;95(5):2893-2900. doi: 10.1021/acs.analchem.2c04446. Epub 2023 Jan 25.
The accurate discrimination of single-nucleotide variants is of great interest for disease diagnosis and clinical treatments. In this work, a unique DNA probe with "Hill-type" cooperativity was first developed based on toehold-mediated strand displacement processes. Under simulation, this probe owns great thermodynamics advantage for specificity due to two mismatch bubbles formed in the presence of single-nucleotide variants. Besides, the strategies of Δ' = 0 and more competitive strands are also beneficial to discriminate single-nucleotide variants. The feasibility of this probe was successfully demonstrated in consistent with simulation results. Due to "Hill-type" cooperativity, the probe allows a steeper dynamic range compared with previous probes. With simulation-guided rational design, the resulting probe can accurately discriminate single-nucleotide variants including nucleotide insertions, mutation, and deletions, which are arbitrarily distributed in target sequence. Two specificity parameters were calculated to quantitatively evaluate its good discrimination ability. Hence, "Hill-type" cooperativity can serve as a novel strategy in DNA probe's design for accurate discrimination of single-nucleotide variants.
单核苷酸变异体的准确鉴别对于疾病诊断和临床治疗具有重要意义。在这项工作中,基于链置换过程首次开发了一种具有“希尔型”协同性的独特DNA探针。模拟结果表明,由于在单核苷酸变异体存在时形成了两个错配气泡,该探针在特异性方面具有很大的热力学优势。此外,Δ' = 0策略和更多竞争性链也有利于鉴别单核苷酸变异体。该探针的可行性已成功得到验证,与模拟结果一致。由于具有“希尔型”协同性,与先前的探针相比,该探针具有更陡峭的动态范围。通过模拟指导的合理设计,所得探针能够准确鉴别包括核苷酸插入、突变和缺失在内的单核苷酸变异体,这些变异体在靶序列中是任意分布的。计算了两个特异性参数以定量评估其良好的鉴别能力。因此,“希尔型”协同性可作为DNA探针设计中准确鉴别单核苷酸变异体的一种新策略。