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用于灵敏、序列特异性、实时DNA检测的阳离子共轭聚电解质/分子信标复合物

Cationic conjugated polyelectrolyte/molecular beacon complex for sensitive, sequence-specific, real-time DNA detection.

作者信息

Feng Xuli, Duan Xinrui, Liu Libin, An Lingling, Feng Fude, Wang Shu

机构信息

Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, PR China.

出版信息

Langmuir. 2008 Nov 4;24(21):12138-41. doi: 10.1021/la802932t. Epub 2008 Oct 4.

Abstract

A new fluorescence method has been developed for DNA detection at room temperature in a sensitive, selective, economical, and real-time manner that interfaces the superiority of a molecular beacon in mismatch discrimination with the light-harvesting property of water-soluble conjugated polyelectrolytes. The probe solution contains a cationic conjugated polyelectrolyte (PFP-NMe3+), a molecular beacon with a five base pairs double-stranded stem labeled at the 5'-terminus with fluorescein (DNA P-Fl), and ethidium bromide (EB, a specific intercalator of dsDNA). The electrostatic interactions between DNA P-Fl and PFP-NMe3+ keep them in close proximity, facilitating the fluorescence resonance energy transfer (FRET) from PFP-NMe3+ to fluorescein. Upon adding a complementary strand to the probe solution, the conformation of DNA P-Fl transits into dsDNA followed by the intercalation of EB into the grooves. Two-step FRET, from PFP-NMe3+ to DNA P-Fl (FRET-1), followed by FRET from DNA P-Fl to EB (FRET-2) takes place. In view of the observed fluorescein or EB emission changes, DNA can be detected in aqueous solution. Because the base mismatch in target DNA inhibits the transition of DNA P-Fl from the stem-loop to duplex structure, single nucleotide mismatch can be clearly detected.

摘要

已开发出一种新的荧光方法,可在室温下以灵敏、选择性好、经济且实时的方式检测DNA,该方法结合了分子信标在错配识别方面的优势与水溶性共轭聚电解质的光捕获特性。探针溶液包含阳离子共轭聚电解质(PFP-NMe3+)、一种在5'-末端用荧光素标记的具有五个碱基对双链茎的分子信标(DNA P-Fl)以及溴化乙锭(EB,dsDNA的特异性嵌入剂)。DNA P-Fl与PFP-NMe3+之间的静电相互作用使它们紧密靠近,促进了从PFP-NMe3+到荧光素的荧光共振能量转移(FRET)。向探针溶液中加入互补链后,DNA P-Fl的构象转变为dsDNA,随后EB嵌入沟槽中。发生两步FRET,先是从PFP-NMe3+到DNA P-Fl(FRET-1),然后是从DNA P-Fl到EB(FRET-2)。鉴于观察到的荧光素或EB发射变化,可在水溶液中检测DNA。由于靶DNA中的碱基错配会抑制DNA P-Fl从茎环结构向双链结构的转变,因此可以清晰地检测出单核苷酸错配。

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