Zhx2 Is a Candidate Gene Underlying Oxymorphone Metabolite Brain Concentration_ Associated with State-Dependent Oxycodone Reward

Jacob A. Beierle, Emily J. Yao, Stanley I. Goldstein, William B. Lynch, Julia L. Scotellaro, Anyaa A. Shah, Katherine D. Sena, Alyssa L. Wong, Colton L. Linnertz, Olga Averin, David E. Moody, Christopher A. Reilly, Gary Peltz, Andrew Emili, Martin T. Ferris, Camron D. Bryant

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Understanding the pharmacogenomics of opioid metabolism and behavior is vital to therapeutic success, as mutations can dramatically alter therapeutic efficacy and addiction liability. We found robust, sex-dependent BALB/c substrain differences in oxycodone behaviors and whole brain concentration of oxycodone metabolites. BALB/cJ females showed robust state-dependent oxycodone reward learning as measured via conditioned place preference when compared with the closely related BALB/cByJ substrain. Accordingly, BALB/cJ females also showed a robust increase in brain concentration of the inactive metabolite noroxycodone and the active metabolite oxymorphone compared with BALB/cByJ mice. Oxymorphone is a highly potent, full agonist at the mu opioid receptor that could enhance drug-induced interoception and state-dependent oxycodone reward learning. Quantitative trait locus (QTL) mapping in a BALB/c F2 reduced complexity cross revealed one major QTL on chromosome 15 underlying brain oxymorphone concentration that explained 32% of the female variance. BALB/cJ and BALB/cByJ differ by fewer than 10,000 variants, which can greatly facilitate candidate gene/variant identification. Hippocampal and striatal cis-expression QTL (eQTL) and exon-level eQTL analysis identified Zhx2, a candidate gene coding for a transcriptional repressor with a private BALB/cJ retroviral insertion that reduces Zhx2 expression and sex-dependent dysregulation of cytochrome P450 enzymes. Whole brain proteomics corroborated the Zhx2 eQTL and identified upregulated CYP2D11 that could increase brain oxymorphone in BALB/cJ females. To summarize, Zhx2 is a highly promising candidate gene underlying brain oxycodone metabolite levels. Future studies will validate Zhx2 and its site of action using reciprocal gene editing and tissue-specific viral manipulations in BALB/c substrains.

Original languageEnglish (US)
Pages (from-to)167-180
Number of pages14
JournalJournal of Pharmacology and Experimental Therapeutics
Volume382
Issue number2
DOIs
StatePublished - Aug 1 2022
Externally publishedYes

ASJC Scopus subject areas

  • Molecular Medicine
  • Pharmacology

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