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Design of a synthetic luminescent probe from a biomolecule binding domain: selective detection of AU-rich mRNA sequences

机译:从生物分子结合域设计合成发光探针:富AU的mRNA序列的选择性检测

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We report the design of a luminescent sensor based upon the zinc finger (ZF) protein TIS11d, that allows for the selective time-resolved detection of the UUAUUUAUU sequence of the 3′-untranslated region of messenger RNA. This sensor is composed of the tandem ZF RNA binding domain of TIS11d functionalized with a luminescent Tb3+ complex on one of the ZFs and a sensitizing antenna on the other. This work provides the proof of principle that an RNA binding protein can be re-engineered as an RNA sensor and, more generally, that tunable synthetic luminescent probes for biomolecules can be obtained by modifying biomolecule-binding domains.
机译:我们报告了基于锌指(ZF)蛋白TIS11d的发光传感器的设计,该设计允许对Messenger RNA 3'-非翻译区的UUAUUUAUU序列进行选择性的时间分辨检测。该传感器由TIS11d的串联ZF RNA结合结构域组成,该结构通过一个ZF上的发光Tb 3 + 复合物和另一个上的敏化天线进行功能化。这项工作提供了原理上的证明,即可以将RNA结合蛋白重新设计为RNA传感器,并且更普遍的是,可以通过修饰生物分子结合域来获得生物分子的可调合成发光探针。

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