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DNA quadruplexes as molecular scaffolds for controlled assembly of fluorogens with aggregation-induced emission

机译:DNA四链体作为分子支架通过聚集诱导的发射来控制氟的组装

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摘要

Aggregation-induced emission (AIE) can be generated due to the restriction of intramolecular motions. The controllable assembly of fluorogens with AIE properties (AIEgens) is able to provide a new opportunity for precise manipulation of fluorescent signal transduction. Here, a tetrapod DNA quadruplex (TP-G4) was designed as a molecular scaffold for assembly and precise modulation of light emission of an oligonucleotide-grafted fluorogen with aggregation-induced emission (Oligo-AIEgen). The Oligo-AIEgen was synthesized by attaching the AIEgen to the 3′-terminus of the oligonucleotide through a dibenzylcyclooctyne mediated coupling reaction. The AIEgen emitted no detectable fluorescence in the context of a double-stranded structure. When hybridized to the parallel-stranded TP-G4, several AIEgens were located in close proximity to generate fluorescence. The fluorescence intensity has been precisely regulated by manipulation of the spacer length between the core structure of the scaffold and AIEgen, as well as by altering the quartet number of the G-quadruplex. Similar control of fluorescence was also demonstrated using tetramolecular and bimolecular i-motif quadruplex structures as the scaffolds. These scaffolds provide a proof of concept on the manipulation of molecular interactions, which forms a universal molecular tool for the design of new biosensing strategies.
机译:由于分子内运动的限制,可以产生聚集诱导的发射(AIE)。具有AIE特性的氟的可控组装(AIEgens)能够为精确操纵荧光信号转导提供新的机会。在这里,四足体DNA四链体(TP-G4)被设计为分子支架,用于组装和精确调节寡核苷酸嫁接的氟的发光与聚集诱导的发射(Oligo-AIEgen)。通过二苄基环辛炔介导的偶联反应将AIEgen连接至寡核苷酸的3'-末端来合成Oligo-AIEgen。在双链结构的情况下,AIEgen没有发出可检测到的荧光。当与平行链TP-G4杂交时,几个AIEgens紧密靠近以产生荧光。荧光强度已通过调节支架核心结构与AIEgen之间的间隔区长度以及通过改变G-四链体的四重位数来精确调节。使用四分子和双分子i-基序四链体结构作为支架,也证明了类似的荧光控制。这些支架为分子相互作用的操纵提供了概念证明,这形成了设计新生物传感策略的通用分子工具。

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