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Published on: July 3, 2015
Functional characteristics of the naked mole rat μ-opioid receptor
Melanie Busch-Dienstfertig1, Clarisse A Roth, Christoph Stein
1Department of Anesthesiology and Intensive Care Medicine, Charité Campus Benjamin Franklin, Freie Universität Berlin, Berlin, Germany.
Abstract:
While humans and most animals respond to µ-opioid receptor (MOR) agonists with analgesia and decreased aggression, in the naked mole rat (NMR) opioids induce hyperalgesia and severe aggression. Single nucleotide polymorphisms in the human mu-opioid receptor gene (OPRM1) can underlie altered behavioral responses to opioids. Therefore, we hypothesized that the primary structure of the NMR MOR may differ from other species. Sequencing of the NMR oprm1 revealed strong homology to other mammals, but exposed three unique amino acids that might affect receptor-ligand interactions. The NMR and rat oprm1 sequences were cloned into mammalian expression vectors and transfected into HEK293 cells. Radioligand binding and 3'-5'-cyclic adenosine monophosphate (cAMP) enzyme immunoassays were used to compare opioid binding and opioid-mediated cAMP inhibition. At normalized opioid receptor protein levels we detected significantly lower [3H]DAMGO binding to NMR compared to rat MOR, but no significant difference in DAMGO-induced cAMP inhibition. Strong DAMGO-induced MOR internalization was detectable using radioligand binding and confocal imaging in HEK293 cells expressing rat or NMR receptor, while morphine showed weak or no effects. In summary, we found minor functional differences between rat and NMR MOR suggesting that other differences e.g. in anatomical distribution of MOR underlie the NMR's extreme reaction to opioids.
Insights
Naked mole rats exhibit unique responses to opioids, unlike most mammals. Researchers found minor functional differences in their mu-opioid receptors (MOR), suggesting other factors influence these extreme reactions.
Area of Science:
- Neuroscience
- Pharmacology
- Genetics
Background:
- Most mammals experience pain relief and reduced aggression from mu-opioid receptor (MOR) agonists.
- Naked mole rats (NMRs) paradoxically show hyperalgesia and increased aggression in response to opioids.
- Genetic variations in the human OPRM1 gene are linked to varied opioid responses.
Purpose of the Study:
- To investigate if structural differences in the NMR MOR account for its unique opioid response.
- To compare the functional characteristics of NMR MOR with those of other mammals at the molecular level.
Main Methods:
- Sequencing of the NMR oprm1 gene and comparison with other mammalian sequences.
- Cloning and expression of NMR and rat oprm1 in HEK293 cells.
- Radioligand binding assays and cAMP enzyme immunoassays to assess receptor activity.
- Confocal imaging to analyze MOR internalization.
Main Results:
- NMR oprm1 sequence showed high homology to other mammals but with three unique amino acids.
- Lower [3H]DAMGO binding affinity was observed for NMR MOR compared to rat MOR.
- No significant difference in DAMGO-induced cAMP inhibition between NMR and rat MOR.
- Both receptors showed strong DAMGO-induced internalization, while morphine had minimal effect.
Conclusions:
- Functional differences between rat and NMR MOR are minor.
- The unique opioid response in NMRs is likely due to factors other than primary receptor structure, such as MOR distribution.
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