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Decreased ABCB1 mRNA expression induced by atorvastatin results from enhanced mRNA degradation in HepG2 cells
Alice Cristina Rodrigues1, Rui Curi, Mario Hiroyuki Hirata
1Department of Clinical and Toxicological Analysis, Faculty of Pharmaceutical Sciences, University of Sao Paulo, Av. Prof. Lineu Prestes, 580, Sao Paulo, SP 05508-900, Brazil. alice-rodrigues@usp.br
Abstract:
The mechanisms underlying atorvastatin supression of ABCB1 gene expression, at transcriptional and post-transcriptional levels of ABCB1 gene in HepG2 (human hepatocellular carcinoma) cells were investigated. Quantitative real-time PCR was used to measure mRNA levels, as well as to estimate the half-life of ABCB1 mRNA. Western blotting analysis was performed in order to measure protein levels of ABCB1. Electrophoretic mobility shift assay (EMSA) was used to evaluate interactions between protein(s) and ABCB1 promoter region. Exposure to atorvastatin for 24h resulted in a dose-dependent decrease of ABCB1 mRNA and protein levels, which was not abolished by addition of farnesyl or geranylgeranyl pyrophosphate. After removing fetal bovine serum from the media, however, ABCB1 expression was decreased by 2-fold in either HepG2 cells treated and non-treated with atorvastatin. Addition of cholesterol to serum free media abolished this latter effect on ABCB1 mRNA levels. In EMSA using a 5'-end-labeled 241bp ABCB1 promoter DNA fragment (-198 to +43) as probe, the binding of the proteins to the probe was reduced by NF-Y, but not changed by NFkappaB, AP-1, and SP1. However, the NF-Y binding activity was similar in control and atorvastatin-treated cells. mRNA stability studies revealed that ABCB1 mRNA degradation was increased in 1, 10 and 20muM atorvastatin-treated versus control cells (half-lives of 2h versus 7h). Therefore, evidence is provided that decreased mRNA stability by atorvastatin treatment may explain the decrease in ABCB1 transcript levels.
Insights
Atorvastatin reduces ABCB1 gene expression in liver cancer cells by decreasing mRNA stability, not affecting protein-DNA binding. This finding clarifies how statins impact ABCB1 levels.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- The ABCB1 gene encodes P-glycoprotein, a transporter involved in drug efflux.
- Understanding atorvastatin's effect on ABCB1 is crucial for optimizing cancer therapy.
Purpose of the Study:
- Investigate the mechanisms of atorvastatin-induced suppression of ABCB1 gene expression.
- Differentiate between transcriptional and post-transcriptional regulation by atorvastatin.
Main Methods:
- Quantitative real-time PCR for mRNA levels and half-life.
- Western blotting for protein quantification.
- Electrophoretic mobility shift assay (EMSA) for DNA-protein interactions.
Main Results:
- Atorvastatin caused a dose-dependent decrease in ABCB1 mRNA and protein.
- ABCB1 mRNA stability was significantly reduced by atorvastatin treatment.
- NF-Y binding to the ABCB1 promoter was not altered by atorvastatin.
Conclusions:
- Atorvastatin suppresses ABCB1 expression primarily through post-transcriptional mechanisms, specifically by increasing mRNA degradation.
- This enhanced mRNA instability is the likely cause of reduced ABCB1 transcript levels.
- Atorvastatin's effect is independent of direct modulation of NF-Y binding to the ABCB1 promoter.
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