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Cellular adaptation to opiates alters ion-channel mRNA levels
1Department of Pharmacology, University of Pennsylvania School of Medicine, Philadelphia 19104.
Abstract:
The chronic use of several drugs, including opiates, results in the stereotypical behaviors characteristic of addiction. Alterations in gene expression have been associated with the use of these addictive drugs. Previous studies, however, have been limited to describing changes in amounts of individual mRNAs from single tissue samples. Cellular adaptation to opiates, reflected in the regulation of the expression of many different mRNAs, seems likely to contribute to the complicated behaviors of addiction. The present studies examined coordinate alterations in the amounts of multiple mRNAs in the rat striatum and in NG108-15 cells after opioid stimulation or the precipitated withdrawal of opioid use. The experimental approach combined amplification of the poly(A)+ RNA population with reverse Northern blot analysis to simultaneously characterize the relative changes in several mRNAs. Morphine treatment of rats for 5 days was associated with a reduction in the amount of striatal RNA for the voltage-sensitive K+ channel without significant changes in other ion channels. In NG108-15 cells stimulation with the delta-opiate receptor agonist [D-Ala2,D-Leu5]enkephalin (DADLE) alone and followed by naloxone (precipitated withdrawal) caused relative changes in the abundances of several mRNAs. The composite effects of alterations in the abundance of multiple mRNAs (and the proteins they encode) in response to opioid use likely contribute to the development and maintenance of opiate-mediated behaviors.
Insights
Chronic opiate use alters gene expression, contributing to addiction behaviors. These studies reveal coordinated changes in multiple messenger RNAs (mRNAs) in brain and cells, offering insights into addiction mechanisms.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Chronic drug use, particularly opiates, leads to addiction behaviors.
- Gene expression alterations are linked to addictive drug use.
- Previous research focused on individual messenger RNA (mRNA) changes in single tissues.
Purpose of the Study:
- To investigate coordinated changes in multiple mRNAs in rat striatum and NG108-15 cells.
- To understand cellular adaptation to opioid stimulation and precipitated withdrawal.
- To link mRNA abundance alterations to opiate-mediated behaviors.
Main Methods:
- Combined poly(A)+ RNA amplification with reverse Northern blot analysis.
- Simultaneously characterized relative changes in multiple mRNAs.
- Examined effects of chronic morphine treatment in rats and opioid receptor agonist (DADLE) with naloxone in NG108-15 cells.
Main Results:
- Morphine treatment reduced striatal RNA for voltage-sensitive K+ channels.
- Opioid stimulation and precipitated withdrawal altered abundances of several mRNAs in NG108-15 cells.
- Demonstrated coordinate alterations in multiple mRNA levels.
Conclusions:
- Cellular adaptation involves regulation of many different mRNAs.
- Coordinated mRNA changes likely contribute to the development and maintenance of opiate-mediated behaviors.
- This study provides a more comprehensive view of gene expression changes in addiction.