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作 者:Yaning Zhang Yongkang Lyu Zhizheng Cao Xiaolin Chen Qingtian Meng Changzhe Zhang 张雅宁;吕永康;曹智正;陈晓琳;孟庆田;张常哲
机构地区:[1]School of Physics and Electronics,Shandong Normal University,Jinan 250358,China
出 处:《Chinese Physics B》2025年第2期241-248,共8页中国物理B(英文版)
基 金:Project supported by the National Natural Science Foundation of China(Grant Nos.11804195,11847224,11674198,and 12274265);the Natural Science Foundation of Shandong Province,China(Grant Nos.ZR2018BA034 and ZR2022MA006)。
摘 要:To understand the gene-based biological processes in-depth,the single-molecule real-time sequencing has drawn increasing attention with promoted by the Human Genome Project.Herein,a set of newly designed canonical fluorescent bases(A_(y),tC,G_(b),T_(p))are proposed for four-color DNA sequencing.These quasi-intrinsic probes are derived from the fluorophore replacement and ring expansion on natural bases,which still keep the pyrimidine or purine underlying skeleton and Watson–Crick hydrogen bonding face to allow minimal perturbation to the native DNA duplex.More importantly,these nucleobase analogues possess red-shifted absorption and efficient photoluminescence due to the enhancedπ-conjugation in character.Meanwhile,the four analogues could generate distinct emission wavelength(Δλ~50 nm)for real-time sequencing.To assess the biological employment of the proposed biosensors,the effects of base pairing and linking deoxyribose are also considered.
关 键 词:DNA sequencing base analogues fluorescent probe
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