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Facile conversion of RNA aptamers to modular fluorescent sensors with tunable detection wavelengths.

机译:将RNA适体轻松转换为具有可调检测波长的模块化荧光传感器。

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摘要

A GTP aptamer was converted to a modular fluorescent GTP sensor by conjugation of RRE (Rev responsive element) RNA and successive complex formation with a fluorophore-modified Rev peptide. Structural changes associated with substrate binding in the RNA aptamer were successfully transduced into changes in fluorescence intensity because of the modular structure of ribonucleopeptides. A simple modular strategy involving conjugation of a fluorophore-modified ribonucleopeptide to the stem region of an RNA aptamer deduced from secondary structural information helps produce fluorescent sensors, which allow tuning of excitation and detection wavelengths through the replacement of the fluorophore at the N-terminal of the Rev peptide.
机译:通过缀合RRE(Rev响应元件)RNA并与荧光团修饰的Rev肽相继形成复合物,将GTP适体转化为模块化荧光GTP传感器。由于核糖核苷酸的模块结构,与RNA适体中的底物结合相关的结构变化已成功地转化为荧光强度的变化。一种简单的模块化策略,涉及将荧光团修饰的核糖核苷酸肽结合到从二级结构信息推导的RNA适体的茎区域上,有助于产生荧光传感器,该传感器可通过替换荧光素N端的荧光团来调节激发和检测波长。 Rev肽。

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