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A Biosensor Platform for Metal Detection Based on Enhanced Green Fluorescent Protein

机译:基于增强型绿色荧光蛋白的金属检测生物传感器平台

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摘要

Microbial cell-based biosensors, which mostly rely on stress-responsive operons, have been widely developed to monitor environmental pollutants. Biosensors are usually more convenient and inexpensive than traditional instrumental analyses of environmental pollutants. However, the targets of biosensors are restricted by the limited number of genetic operon systems available. In this study, we demonstrated a novel strategy to overcome this limitation by engineering an enhanced green fluorescent protein (eGFP). It has been reported that combining two fragments of split-eGFP can form a native structure. Thus, we engineered new biosensors by inserting metal-binding loops (MBLs) between β-strands 9 and 10 of the eGFP, which then undergoes conformational changes upon interaction between the MBLs and targets, thereby emitting fluorescence. The two designed MLBs based on our previous study were employed as linkers between two fragments of eGFP. As a result, an Escherichia coli biosensor exhibited a fluorescent signal only when interacting with cadmium ions, revealing the prospect of a new biosensor for cadmium detection. Although this study is a starting stage for further developing biosensors, we believe that the proposed strategy can serve as basis to develop new biosensors to target various environmental pollutants.
机译:微生物细胞为基础的生物传感器,主要依靠压力响应操纵子,已广泛开发来监测环境污染物。生物传感器通常比传统的环境污染物分析仪器更方便,更便宜。但是,生物传感器的目标受到可用基因操纵子系统数量有限的限制。在这项研究中,我们展示了一种通过工程化增强的绿色荧光蛋白(eGFP)克服这一局限性的新颖策略。据报道,结合两个分开的eGFP片段可以形成天然结构。因此,我们通过在eGFP的β链9和10之间插入金属结合环(MBL),设计了新的生物传感器,然后在MBL与靶标相互作用时发生构象变化,从而发出荧光。基于我们先前的研究设计的两个MLB被用作eGFP两个片段之间的连接子。结果,大肠杆菌生物传感器仅在与镉离子相互作用时才显示荧光信号,从而揭示了用于镉检测的新型生物传感器的前景。尽管这项研究是进一步开发生物传感器的开始阶段,但我们认为,所提出的策略可以作为开发针对各种环境污染物的新型生物传感器的基础。

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