Escherichia coli (<'/> Characterisation of the bacterial biosensor GMG in E-coli BL21 (DE3)
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Characterisation of the bacterial biosensor GMG in E-coli BL21 (DE3)

机译:E-Coli BL21(DE3)中细菌生物传感器GMG的表征

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In this work, a gold biosensor has been constructed and characterised in Escherichia coli (E. coli). Though gold biosensors have been previously reported, a NOT gate gold biosensing genetic circuit was constructed using an orthogonal inverter system as an alternative to a circuit where output is contingent solely on input. This enables the detection of changes in gold concentration whereby circuit remains OFF in presence of inducer and ON in absence of inducer. The proposed biosensor is an alternative to conventional forms of gold detection such as Inductively Coupled Plasma-Mass Spectrometry (ICP-MS). The constructed biosensor is a collection of components – golTSB operon (isolated from Salmonella enterica), mf-Lon protease (isolated from Mesoplasma florum) and associated ssrA degradation tag with GFP acting as a reporter. The minimum time and concentration required by the biosensor gol-mflon-GFP (GMG) to achieve the ON output is characterised here using plate reader data derived from a single multi-stage assay.
机译:在这项工作中,已经构建和特征是金色生物传感器 escherichia coli e。 Coli )。尽管先前已经报道了金生物传感器,但是使用正交逆变器系统构造了NOT栅极金生物传感器遗传电路,作为输出仅在输入上的输出偶然的电路的替代方案。这使得能够检测金浓度的变化,其中电路在没有诱导剂的情况下在诱导物的存在下保持脱落。所提出的生物传感器是常规形式的金检测形式的替代,例如电感耦合等离子体质谱(ICP-MS)。构建的生物传感器是组件的集合 - goltsb 操纵子(孤立<斜体xmlns:mml =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> salmonella enterica ), mf - 蛋白酶(孤立 mesoplasma florum )和相关的SSRA退化标签,具有GFP作为记者。生物传感器GOL所需的最短时间和浓度 - mf 为了实现ON输出的LON-GFP(GMG)的特点是使用源自单级测定的板读取器数据。

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