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Recombinant methods in protein and whole-cell biosensing

机译:蛋白质和全细胞生物传感的重组方法

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Abstract: In this paper, we investigate the use of fluorescently- labeled binding proteins and genetically engineered bacterial cells for sensing of phosphate, glucose, and L- arabinose. To optimize the performance of the labeled binding proteins for biosensing purposes, a few key considerations were taken into account. A site-selective labeling protocol of the fluorescent reporter to the protein was used to ensure that the probe reported from a specific domain of the protein. The labeling sites chosen were hypothesized to undergo a physicochemical change when the biorecognition element binds the analyte. Cysteine mutations were introduced into the binding proteins by site-directed mutagenesis using the polymerase chain reaction. The residues selected were all in close proximity to the binding cleft, a region that is affected the most by the conformational change that accompanies ligand binding. The cysteine residues were then labeled with environment- sensitive fluorophores and changes in the fluorescence properties of the conjugates were monitored and related to the amount of ligand present. The application of microorganisms in sensing systems represent new advances in the development of novel analytical techniques for the detection of a target analyte. In these systems, a genetically engineered organism generates an analytically useful signal when it encounters a specific target substance due to selective recognition and binding properties towards that particular compound. This concept has been demonstrated using an optical bacteria-based sensing system capable of detecting the monosaccharide L-arabinose that employed the green fluorescent protein as a reporter protein.!40
机译:摘要:在本文中,我们研究了荧光标记的结合蛋白和基因工程细菌细胞在磷酸,葡萄糖和L-阿拉伯糖感测中的应用。为了优化用于生物传感目的的标记结合蛋白的性能,考虑了一些关键因素。使用荧光报告基因对蛋白质的位点选择性标记方案来确保探针是从蛋白质的特定结构域报告的。假设选择的标记位点在生物识别元件结合分析物时发生物理化学变化。使用聚合酶链反应通过定点诱变将半胱氨酸突变引入结合蛋白。选择的残基都非常靠近结合裂口,该区域受配体结合的构象变化影响最大。然后用对环境敏感的荧光团标记半胱氨酸残基,并监测缀合物的荧光性质的变化并将其与存在的配体的量相关。微生物在传感系统中的应用代表了用于检测目标分析物的新型分析技术发展的新进展。在这些系统中,由于对特定化合物的选择性识别和结合特性,基因工程生物遇到特定目标物质时会产生分析上有用的信号。使用基于光学细菌的传感系统已证明了这一概念,该系统能够检测采用绿色荧光蛋白作为报告蛋白的单糖L-阿拉伯糖。

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