Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Development of a cellular biosensor system for genotoxicity detection based on Trp53 promoter

View through CrossRef
Objective: To develop a mouse cell biosensor system for the high-throughput genotoxicity detection of chemicals, such as environmental pollutants. Method: We developed a novel reporter vector pGL4-GFP, wherein the firefly luciferase reporter gene in the pGL4.82 vector was replaced by the green fluorescent protein (GFP) gene from the pAcGFP1-N1 vector. To construct the reporter pGL4-p53-GFP (p53 promoter linked to GFP), a fragment containing the p53 gene promoter was generated by amplifying a region from −481 to +180 of mouse genomic DNA isolated from mouse tail tissue. We developed a mouse cell biosensor system for the high-throughput genotoxicity detection of new drugs by stably integrating the reporter plasmid of pGL4-p53-GFP into the mouse embryonic fibroblast cells. Various genotoxic agents were used to treat this biosensor system. The resulting fluorescence was directly observed under a fluorescence microscope, and the GFP protein level was measured through Western blot analysis. Result: The biosensor system was treated with genotoxic agents, such as doxorubicin, cyclophosphamide, and benzo(a)pyrene. The GFP protein expression was significantly increased in cells exposed to genotoxic agents but negatively responded to the non-genotoxic agent dimethyl sulfoxide, thereby proving the specificity and sensitivity of the biosensor system. Conclusion: This novel in vitro biosensor system can be especially useful in genotoxicity detection.
Title: Development of a cellular biosensor system for genotoxicity detection based on Trp53 promoter
Description:
Objective: To develop a mouse cell biosensor system for the high-throughput genotoxicity detection of chemicals, such as environmental pollutants.
Method: We developed a novel reporter vector pGL4-GFP, wherein the firefly luciferase reporter gene in the pGL4.
82 vector was replaced by the green fluorescent protein (GFP) gene from the pAcGFP1-N1 vector.
To construct the reporter pGL4-p53-GFP (p53 promoter linked to GFP), a fragment containing the p53 gene promoter was generated by amplifying a region from −481 to +180 of mouse genomic DNA isolated from mouse tail tissue.
We developed a mouse cell biosensor system for the high-throughput genotoxicity detection of new drugs by stably integrating the reporter plasmid of pGL4-p53-GFP into the mouse embryonic fibroblast cells.
Various genotoxic agents were used to treat this biosensor system.
The resulting fluorescence was directly observed under a fluorescence microscope, and the GFP protein level was measured through Western blot analysis.
Result: The biosensor system was treated with genotoxic agents, such as doxorubicin, cyclophosphamide, and benzo(a)pyrene.
The GFP protein expression was significantly increased in cells exposed to genotoxic agents but negatively responded to the non-genotoxic agent dimethyl sulfoxide, thereby proving the specificity and sensitivity of the biosensor system.
Conclusion: This novel in vitro biosensor system can be especially useful in genotoxicity detection.

Related Results

Abstract 1262: Comparative analysis of TP53 alleles in pancreatic ductal adenocarcinoma
Abstract 1262: Comparative analysis of TP53 alleles in pancreatic ductal adenocarcinoma
Abstract The transcription factor p53 is a tumor suppressor capable of inducing cell cycle arrest, senescence, and apoptosis. Both truncating loss-of-function mutati...
Evaluation of extracts of wild Cannabis sativa L. for genotoxicity and phytochemical composition
Evaluation of extracts of wild Cannabis sativa L. for genotoxicity and phytochemical composition
Cannabis sativa L. is used as medicine and narcotic in Lesotho. Phytochemical composition and total phenolics content (TPC) for hexane, chloroform, ethyl acetate and methanol extra...
The emergence and evolution of gene expression in genome regions replete with regulatory motifs
The emergence and evolution of gene expression in genome regions replete with regulatory motifs
Abstract Gene regulation is essential for life and controlled by regulatory DNA. Mutations can modify the activity of regulatory DNA, and also create new regulatory...

Back to Top