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Improved approach to RNA and protein recognition for pathogen detection

机译:用于病原体检测的改进的RNA和蛋白质识别方法

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We are developing (U.S.Air Force, SBIR) a proprietary technology, based on the enzyme Q-beta replicase, to very rapidly detect and identify microorganisms (rRNA), virions (particularly RNA-based) and proteins of interest for pathogen detection. This enzyme is known to amplify a specific RNA signal one billion-fold in less than fifteen minutes at a constant temperature of 37 deg C. RNA probes are made in "halves" that are joined to each other after their terminal ends are brought into proximity mediated by the binding to the target. Only such a full-length molecule can be amplified. We have demonstrated specific examples of recognition of RNA target sequences of interest in species of Bacillus and are investigating methods for overcoming the well-known promiscuity of the enzyme so that this recognition feature can be utilized with confidence, even in the presence of dirty backgrounds.
机译:我们正在开发(美国空军,SBIR)一种基于Q-beta复制酶的专有技术,以非常快速地检测和识别病原体检测所需的微生物(rRNA),病毒体(特别是基于RNA)和蛋白质。已知该酶可在不到37分钟的恒定温度下于不到15分钟的时间内将特定的RNA信号放大十亿倍。RNA探针制成“两半”,末端彼此靠近后彼此连接通过与靶标的结合介导。只有这样的全长分子可以被扩增。我们已经证明了芽孢杆菌属物种中感兴趣的RNA靶序列识别的具体例子,并且正在研究克服酶的众所周知的混杂性的方法,以便即使在肮脏的背景下也可以放心地利用这种识别功能。

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