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Published on: June 5, 2020
Cylindrospermopsin induced transcriptional responses in human hepatoma HepG2 cells
Alja Straser1, Metka Filipič, Bojana Zegura
1National Institute of Biology, Department for Genetic Toxicology and Cancer Biology, Večna pot 111, 1000 Ljubljana, Slovenia. alja.straser@nib.si
Abstract:
The newly emerging cyanotoxin cylindrospermopsin (CYN) is showing genotoxic effects in a range of test systems. However, the knowledge on the mechanisms involved is limited. To get insight into the cellular responses to CYN a toxicogenomic analysis of selected genes commonly affected by genotoxic stress was performed on HepG2 cells exposed to a non-cytotoxic but genotoxic concentration of CYN (0.5 μg/ml for 12 and 24h). CYN increased expression of the immediate-early response genes from the FOS and JUN gene families and there was strong evidence for the involvement of P53 and NF-κB signaling. Strong up-regulation of the growth arrest and DNA damage inducible genes (GADD45A and GADD45B), cyclin-dependent kinase inhibitors (CDKN1A and CDKN2B), checkpoint kinase 1 (CHEK1), and genes involved in DNA damage repair (XPC, ERCC4 and others) indicated cell-cycle arrest and induction of nucleotide excision and double strand break repair. Up-regulation of metabolic enzyme genes provided evidence for the involvement of phase I (CYP1A1, CYP1B1, ALDH1A2 and CES2) and phase II (UGT1A6, UGT1A1, NAT1 and GSTM3) enzymes in the detoxification response and potential activation of CYN. The obtained transcriptional patterns after exposure of HepG2 cells to CYN provide valuable new information on the cellular response to CYN.
Insights
The cyanotoxin cylindrospermopsin (CYN) causes genotoxicity by triggering cell cycle arrest and DNA repair mechanisms. This study reveals CYN
Area of Science:
- Environmental toxicology
- Molecular toxicology
- Genomics
Background:
- Emerging cyanotoxin cylindrospermopsin (CYN) exhibits genotoxic effects.
- Mechanisms underlying CYN's cellular toxicity are not fully understood.
Purpose of the Study:
- Investigate cellular responses to CYN using toxicogenomic analysis.
- Elucidate the molecular mechanisms of CYN-induced genotoxicity.
Main Methods:
- HepG2 cells exposed to a non-cytotoxic, genotoxic concentration of CYN (0.5 μg/ml for 12 and 24h).
- Toxicogenomic analysis of selected genes involved in genotoxic stress responses.
Main Results:
- CYN exposure upregulated immediate-early response genes (FOS, JUN), P53, and NF-κB signaling.
- Upregulation of DNA damage inducible genes (GADD45A/B), cell cycle inhibitors (CDKN1A/2B), and DNA repair genes (XPC, ERCC4) indicated cell cycle arrest and repair induction.
- Upregulation of Phase I and Phase II metabolic enzymes suggests CYN detoxification and potential activation.
Conclusions:
- Transcriptional patterns reveal cellular responses to CYN, including cell cycle arrest, DNA repair induction, and metabolic enzyme involvement.
- Provides new insights into the molecular mechanisms of CYN genotoxicity.

