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Expanding the chemistry of fluorescent protein biosensors through genetic incorporation of unnatural amino acids

机译:通过非天然氨基酸的遗传掺入扩展荧光蛋白生物传感器的化学反应

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摘要

Fluorescent proteins are essential tools in biological research, ranging from the study of individual biological components to the interrogation of complex cellular systems. Fluorescent protein derived biosensors are increasingly applied to the study of biological molecules and events in living cells. The present review focuses on a specific class of fluorescent protein biosensors in which a genetically installed unnatural amino acid (UAA*) acts as the sensing element. Upon direct interaction with the analyte of interest, the chemical and/or physical properties of UAA* are altered, which triggers fluorescence property changes of the biosensor and generates readouts. In comparison to mutagenesis approaches within the standard genetic code, introduction of UAA*s with a unique functionality and chemical reactivity could broaden the scope of analytes and improve the specificity of biosensors. Nonconventional functional groups in fluorescent proteins enable sensor designs that are not readily accessible using the common twenty amino acids. Recent reports of UAA*-containing fluorescent protein sensors serve as excellent examples for the utility of such sensor design. We envisage that the integration of the two powerful chemical biology tools, fluorescent protein sensors and genetic incorporation of UAA*s, will lead to novel biosensors that can expand and deepen current understanding of cellular processes.
机译:荧光蛋白是生物学研究中必不可少的工具,范围从单个生物学成分的研究到复杂细胞系统的询问。荧光蛋白衍生的生物传感器越来越多地应用于研究活细胞中的生物分子和事件。本综述着眼于一类特定的荧光蛋白生物传感器,其中遗传安装的非天然氨基酸(UAA *)作为传感元件。与目标分析物直接相互作用后,UAA *的化学和/或物理性质发生改变,从而触发生物传感器的荧光性质变化并产生读数。与标准遗传密码中的诱变方法相比,具有独特功能和化学反应性的UAA *的引入可以拓宽分析物的范围并提高生物传感器的特异性。荧光蛋白中的非常规官能团使传感器设计无法使用常见的20个氨基酸轻易获得。包含UAA *的荧光蛋白传感器的最新报告为此类传感器设计的实用性提供了极好的示例。我们设想将两种功能强大的化学生物学工具,荧光蛋白传感器和UAA * s的基因整合整合在一起,将产生可以扩展和加深当前对细胞过程理解的新型生物传感器。

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  • 来源
    《Molecular BioSystems》 |2013年第12期|2961-2970|共10页
  • 作者

    Wei Niu; Jiantao Guo;

  • 作者单位

    Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE, 68588-0304,USA;

    Department of Chemistry, University of Nebraska-Lincoln, Lincoln, NE, 68588-0304,USA;

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