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Light without substrate amendment: the bacterial luciferase gene cassette as a mammalian bioreporter

机译:无底物修饰的光:细菌荧光素酶基因盒作为哺乳动物的生物报道分子

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Bioluminescent production represents a facile method for bioreporter detection in mammalian tissues. The lack of endogenous bioluminescent reactions in these tissues allows for high signal to noise ratios even at low signal strength compared to fluorescent signal detection. While the luciferase enzymes commonly employed for bioluminescent detection are those from class Insecta (firefly and click beetle luciferases), these are handicapped in that they require concurrent administration of a luciferin compound to elicit a bioluminescent signal. The bacterial luciferase (lux) gene cassette offers the advantages common to other bioluminescent proteins, but is simultaneously capable of synthesizing its own luciferin substrates using endogenously available cellular compounds. The longstanding shortcoming of the lux cassette has been its recalcitrance to function in the mammalian cellular environment. This paper will present an overview of the work completed to date to overcome this limitation and provide examples of mammalian lux-based bioreporter technologies that could provide the framework for advanced, biomedically relevant real-time sensor development.
机译:生物发光产生代表了在哺乳动物组织中进行生物报告检测的简便方法。与荧光信号检测相比,即使在低信号强度下,这些组织中缺乏内源性生物发光反应仍可实现高信噪比。尽管通常用于生物发光检测的荧光素酶是Insecta类(萤火虫和and虫甲虫荧光素酶),但由于需要同时施用荧光素化合物以引发生物发光信号而受到限制。细菌萤光素酶(lux)基因盒具有其他生物发光蛋白共有的优势,但同时能够利用内源性细胞化合物合成自身的萤光素底物。 lux盒的长期缺陷一直是它在哺乳动物细胞环境中无法发挥功能。本文将概述迄今为止为克服这一局限性而完成的工作,并提供基于哺乳动物勒克斯的生物报告基因技术的实例,这些技术可为先进的,生物医学相关的实时传感器开发提供框架。

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