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MiR-33-5p Regulates CREB to Induce Morphine State-dependent Memory in Rats: Interaction with the µ Opioid Receptor
Sadegh Moradi Vastegani1, Behrang Alani2, Khatereh Kharazmi1
1Institute for Basic Sciences, Physiology Research Center, Kashan University of Medical Sciences, Kashan, Iran.
Abstract:
The aim of the present study was to examine the hypothesis that miR-33-5p attenuates morphine state-dependent (StD) memory via the µ opioid receptor by regulating cyclic AMP response element-binding protein (CREB). The effects of post-training morphine and morphine StD memory and their interaction with pre-test naloxone were evaluated using a single-trial inhibitory avoidance paradigm. Then, the hippocampal miR-33-5p gene and pCREB/CREB protein expression profiles were evaluated using quantitative real-time PCR and western blotting, respectively. We found that while post-training morphine and morphine StD memory respectively up- and down-regulate the miR-33-5p expression profile in the hippocampus, the reverse results are true for the expression of pCREB/CREB. Pre-test naloxone antagonized the response. Overall, our findings suggest that the expression levels of miR-33-5p in the hippocampus set the basis for morphine StD memory with low miR-33-5p enabling state dependency. The mechanism is mediated via miR33-5p and CREB signaling with the interaction of the µ opioid receptor. This finding may be used as a potential strategy for ameliorating morphine-induced memory-related disorders.
Insights
MicroRNA-33-5p (miR-33-5p) regulates morphine state-dependent memory by influencing cyclic AMP response element-binding protein (CREB) signaling via the µ opioid receptor. Lower miR-33-5p levels in the hippocampus facilitate this memory.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Morphine can induce state-dependent (StD) memory, where recall is contingent on the drug's presence during learning and retrieval.
- The µ opioid receptor and cyclic AMP response element-binding protein (CREB) signaling are implicated in memory formation and modulation.
- MicroRNAs (miRNAs) are emerging as key regulators of gene expression in neuronal plasticity and memory.
Purpose of the Study:
- To investigate the role of miR-33-5p in the formation and expression of morphine StD memory.
- To determine if miR-33-5p modulates morphine StD memory through the µ opioid receptor and CREB signaling pathway.
- To explore the potential of targeting miR-33-5p for managing morphine-induced memory disorders.
Main Methods:
- Utilized a single-trial inhibitory avoidance paradigm to assess morphine StD memory.
- Administered post-training morphine and pre-test naloxone to evaluate memory effects and receptor interactions.
- Quantified hippocampal miR-33-5p expression using quantitative real-time PCR.
- Assessed hippocampal pCREB/CREB protein levels via western blotting.
Main Results:
- Post-training morphine administration upregulated hippocampal miR-33-5p expression.
- Morphine StD memory was associated with downregulated miR-33-5p and upregulated pCREB/CREB levels in the hippocampus.
- Pre-test naloxone administration antagonized these molecular and behavioral effects.
- Lower miR-33-5p expression correlated with the establishment of morphine StD memory.
Conclusions:
- Hippocampal miR-33-5p expression levels are critical for establishing morphine StD memory.
- The mechanism involves miR-33-5p regulation of CREB signaling, modulated by the µ opioid receptor.
- Findings suggest miR-33-5p as a potential therapeutic target for mitigating morphine-related memory impairments.
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