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Splice variant specific increase in Ca2+/calmodulin-dependent protein kinase 1-gamma mRNA expression in response to
Joshua A Harrill1, Geremy W Knapp, Kevin M Crofton
1Curriculum in Toxicology, University of North Carolina at Chapel Hill, CB 7270, Chapel Hill, NC 27599, USA. harrill.josh@epa.gov
Abstract:
In mammals, pyrethroids are neurotoxicants that interfere with ion channel function in excitable neuronal membranes. Previous work demonstrated increases in the expression of Ca(2+)/calmodulin-dependent protein kinase 1-gamma (Camk1g) mRNA following acute deltamethrin and permethrin exposure. In the rat, this gene is expressed as two distinct splice variants, Camk1g1 and Camk1g2. The present study tests the hypothesis that changes in Camk1g mRNA expression in the rat following acute pyrethroid exposure are due to a specific increase in the Camk1g1 splice variant and not the Camk1g2 splice variant. Long-Evans rats were acutely exposed to permethrin, deltamethrin, or corn oil vehicle. Frontal cortex was collected at 6 h postdosing. In addition, rats were exposed to permethrin (100 mg/kg) or deltamethrin (3 mg/kg), and frontal cortex was collected at 1, 3, 6, 9, 12, or 24 h along with time-matched vehicle controls. Expression of Camk1g1 and Camk1g2 mRNA was measured by quantitative real-time RT-PCR and quantified using the 2(-Delta Delta C)T method. Dose-dependent increases in Camk1g1 mRNA expression were observed for both pyrethroids at 6 h. In addition, a dose-dependent increase in Camk1g2 was observed at 6 h although it was very small in magnitude. The increases in Camk1g1 expression for deltamethrin and permethrin peak between 3 and 6 h postexposure and returns to control levels by 9 h. There was no increase in CAMK1G1 protein as measured with Western blots. The present data demonstrate that pyrethroid-induced changes in Camk1g are driven mainly by increased expression of the Camk1g1 splice variant.
Insights
Pyrethroid pesticides increase Ca(2+)/calmodulin-dependent protein kinase 1-gamma (Camk1g) mRNA in rats, primarily through the Camk1g1 splice variant. This neurotoxic effect on gene expression is specific and transient.
Area of Science:
- Neurotoxicology
- Molecular Biology
- Genetics
Background:
- Pyrethroids are neurotoxicants affecting ion channels in mammals.
- Previous studies showed increased Ca(2+)/calmodulin-dependent protein kinase 1-gamma (Camk1g) mRNA after pyrethroid exposure.
- The Camk1g gene in rats has two splice variants: Camk1g1 and Camk1g2.
Purpose of the Study:
- To investigate if pyrethroid exposure specifically increases Camk1g1 mRNA expression over Camk1g2.
- To determine the time course and dose-dependency of Camk1g splice variant changes following pyrethroid exposure.
Main Methods:
- Long-Evans rats were exposed to permethrin or deltamethrin.
- Frontal cortex tissue was collected at various time points (1-24 h) post-exposure.
- Quantitative real-time RT-PCR was used to measure Camk1g1 and Camk1g2 mRNA levels.
Main Results:
- Both pyrethroids caused dose-dependent increases in Camk1g1 mRNA expression peaking at 3-6 hours.
- A minor, dose-dependent increase in Camk1g2 mRNA was observed, but Camk1g1 showed a significantly larger response.
- No significant increase in CAMK1G1 protein levels was detected via Western blot.
Conclusions:
- Pyrethroid-induced alterations in Camk1g expression are predominantly driven by the Camk1g1 splice variant.
- The observed changes in Camk1g1 mRNA are transient, returning to baseline levels within 9 hours.
- While mRNA levels change, corresponding protein level changes were not detected, suggesting post-transcriptional regulation.
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