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HriGFP Novel Flourescent Protein: Expression and Applications

机译:HRGFP新型荧光蛋白:表达和应用

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摘要

Biosensors based on microbial cells have been developed to monitor environmental pollutants. These biosensors serve as inexpensive and convenient alternatives to the conventional lab based instrumental analysis of environmental pollutants. Small monomeric naturally occurring fluorescent proteins (fp) can be exploited by converting them as small biosensing devices for biomedical and environmental applications. Moreover, they can withstand exposure to denaturants, high temperature, and a wide pH range variation. The current study employs newly identified novel fluorescent protein HriGFP from Hydnophora rigida to detect environmental contaminants like heavy metals and organo-phosphorous (pesticide) compounds such as methyl parathion. The HriGFP was initially tested or its expression in bacterial systems (Gram positive and Gram negative) and later on for its biosensing capability in E coli (BL21DE3) for detection of heavy metals and methyl parathion was evaluated. Our results indicated the discrete and stable expression of HriGFP and a profound fluorescent quenching were observed in the presence of heavy metals (Hg, Cu, As) and methyl parathion. Structural analysis revealed heavy metal ions binding to HriGFP via amino acid residues. In-silico-analysis further revealed strong interaction via hydrogen bonds between methyl parathion phosphate oxygen atoms and the amino group of Arg119 of HriGFP. This study implies that HriGFP can act as a biosensor for detecting harmful carcinogenic pesticide like methyl parathion in water resources in the vicinity of heavily pesticide impregnated agricultural lands and heavy metal contaminated water bodies around industrial areas.
机译:已经开发了基于微生物细胞的生物传感器来监测环境污染物。这些生物传感器用作环境污染物的传统实验室仪器分析的廉价和便捷的替代品。通过将它们作为生物医学和环境应用的小型生物传感装置转化为小的生物传感装置,可以利用小单体天然存在的荧光蛋白(FP)。此外,它们可以承受暴露于变性剂,高温和宽的pH范围变异。目前的研究采用来自Hydnophora Rigida的新发现的新型荧光蛋白HRIGFP,以检测重质金属和有机磷(农药)化合物等环境污染物,例如甲基硫磷。最初测试HRIGFP或其在细菌系统(克阳性和革兰氏阴性)中的表达及其在E Coli(BL21DE3)中的生物传感能力进行检测,用于检测重金属和甲基硫磷。我们的结果表明,在重金属(Hg,Cu,As)和甲基硫磷存在下,观察到HRIGFP的离散和稳定表达和深度荧光猝灭。结构分析揭示了通过氨基酸残基与HRIGFP结合的重金属离子。在二氧化硅分析进一步揭示了通过甲基脱硫磷酸氧原子与HRIGFP的Arg119的氨基之间的氢键相互作用。本研究意味着HRIGFP可以作为一种生物传感器,用于检测在工业区周围的大量农药浸渍的农业土地和重金属污染水体附近的水资源中的甲基硫磷等有害致癌杀菌剂。

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