Identification of abundant and evolutionarily conserved opioid receptor circular RNAs in the nervous system modulated by morphine Journal Article


Authors: Irie, T.; Shum, R.; Deni, I.; Hunkele, A.; Le Rouzic, V.; Xu, J.; Wilson, R.; Fischer, G. W.; Pasternak, G. W.; Pan, Y. X.
Article Title: Identification of abundant and evolutionarily conserved opioid receptor circular RNAs in the nervous system modulated by morphine
Abstract: Circular RNAs (circRNAs) are a distinct category of single-stranded, covalently closed RNAs formed by backsplicing. The functions of circRNAs are incompletely known and are under active investigation. Here, we report that in addition to traditional linear mRNAs (linRNA), mouse, rat, and human opioid receptor genes generate exonic circRNA isoforms. Using standard molecular biologic methods, Oprm1 circRNAs (circOprm1) were detected in RNAs of rodent and human brains and spinal cords, as well as human neuroblastoma cells, suggesting evolutionary conservation. Sequencing confirmed backsplicing using canonical splice sites. Oprm1 circRNAs were sense-stranded circRNAs resistant to RNase R digestion. The relative abundance of Oprm1 circRNA to linRNA determined by quantitative reverse transcription polymerase chain reaction varied among mouse brain regions, with circRNA isoforms predominating in rostral structures and less abundant in brain stem. Chronic morphine exposure in mice increased brain circOprm1.e2.3 and circOprm1.e2.e3.e4(302) levels by 1.5- to 1.6-fold relative to linRNA. Sequence analysis predicted numerous microRNA binding sites within Oprm1 circRNA sequences, suggesting a potential role in microRNA sequestration through sponging. In addition, we observed that other opioid receptor genes including d, k, and nociceptin receptor genes produced similar circRNAs. In conclusion, all members of the opioid receptor gene family express circRNAs, with Oprm1 circRNA levels exceeding those of linear forms in some regions. © 2019 by The American Society for Pharmacology and Experimental Therapeutics.
Keywords: adult; controlled study; unclassified drug; human cell; sequence analysis; nonhuman; mouse; reverse transcription polymerase chain reaction; microrna; gene expression; animal experiment; in vivo study; neuromodulation; in vitro study; rna; brain; messenger rna; neuroblastoma cell; quantitative analysis; spinal cord; gene identification; binding site; rodent; morphine; untranslated rna; brain stem; brain region; genetic conservation; rna sequence; opiate receptor; nervous system; delta opiate receptor; kappa opiate receptor; human; male; priority journal; article; nociceptin receptor; circular rna; rna splice site; linear messenger rna; oprm1 protein
Journal Title: Molecular Pharmacology
Volume: 96
Issue: 2
ISSN: 0026-895X
Publisher: The American Society for Pharmacology and Experimental Therapeutics  
Date Published: 2019-08-01
Start Page: 247
End Page: 258
Language: English
DOI: 10.1124/mol.118.113977
PUBMED: 31243060
PROVIDER: scopus
PMCID: PMC6666384
DOI/URL:
Notes: Article -- Export Date: 4 September 2019 -- Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Roger S Wilson
    38 Wilson
  2. Yingxian Pan
    132 Pan
  3. Gavril W Pasternak
    414 Pasternak
  4. Jin   Xu
    60 Xu
  5. Amanda Joy Hunkele
    17 Hunkele
  6. Gregory Walter Fischer
    40 Fischer
  7. Takeshi Irie
    14 Irie
  8. Rebecca Shum
    2 Shum
  9. Ioanna Deni
    2 Deni