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Viability Assays for Cells in Culture
Published on: January 20, 2014
Cocaine and ethanol target 26S proteasome activity and gene expression in neuroblastoma cells
Francesca Felicia Caputi1, Lucia Carboni1, Daria Mazza1
1Department of Pharmacy and Biotechnology, Alma Mater Studiorum-University of Bologna, Irnerio 48, 40126 Bologna, Italy.
Background:
Ethanol and cocaine are widely abused drugs triggering long-lasting changes in neuronal circuits and synaptic transmission through the regulation of enzyme activity and gene expression. Compelling evidence indicates that the ubiquitin-proteasome system plays a role in the molecular changes induced by addictive substances, impacting on several mechanisms implicated in abuse. The goal of these studies was to evaluate the effects of cocaine or ethanol on proteasome activity in neuroblastoma cells. Moreover, the gene expression of specific subunits was assessed.
Methods:
Chymotrypsin-like activity was measured after 2 h, 24 h, and 48 h exposure to 5 μM cocaine or 40 mM ethanol. Proteasome subunit transcripts were evaluated by qPCR at the same time-points.
Results:
Treatments modified proteasome function in opposite directions, since cocaine increased and ethanol reduced chymotrypsin-like activity. Interestingly, we observed gene expression alterations induced by these drugs. In the core particle, the β1 and α5 subunits were mainly up-regulated by cocaine, whereas α6 transcripts were mostly decreased. β2 and β5 did not change. Similarly, ethanol exposure generally increased β1 and α5 mRNAs. Moreover, the β2 subunit was significantly up-regulated by ethanol only. The β5 and α6 subunits were not altered. In the regulatory particle, Rpt3 was increased by cocaine exposure, whereas it was reduced by ethanol. No significant Rpn9 alterations were observed.
Conclusions:
These findings support the notion that addictive substances regulate proteasome function, contributing to the dysregulations related to drug abuse since the availability of adequate subunit amounts is necessary for proper complex assembly and function.
Insights
Cocaine and ethanol oppositely affect proteasome activity and gene expression in neuroblastoma cells. These findings highlight the ubiquitin-proteasome system
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Addictive drugs like ethanol and cocaine induce lasting changes in neuronal circuits.
- The ubiquitin-proteasome system is implicated in molecular alterations caused by substance abuse.
- Understanding proteasome regulation is crucial for addressing drug abuse mechanisms.
Purpose of the Study:
- To investigate the impact of cocaine and ethanol on proteasome activity in neuroblastoma cells.
- To assess the gene expression of specific proteasome subunits following drug exposure.
Main Methods:
- Neuroblastoma cells were exposed to cocaine (5 μM) or ethanol (40 mM) for 2, 24, and 48 hours.
- Proteasome chymotrypsin-like activity was measured.
- Quantitative PCR (qPCR) was used to evaluate proteasome subunit gene expression.
Main Results:
- Cocaine increased proteasome chymotrypsin-like activity, while ethanol decreased it.
- Cocaine and ethanol differentially altered the gene expression of proteasome subunits (e.g., β1, α5, α6, Rpt3).
- Specific subunits like β1 and α5 were generally upregulated by both drugs, while others showed varied responses.
Conclusions:
- Addictive substances modulate proteasome function and subunit availability.
- These drug-induced proteasome dysregulations may contribute to the molecular basis of substance abuse.
- Proper proteasome assembly and function are essential and are targeted by addictive drugs.
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