Microarray profiling provides the capability to analyze complex changes in gene expression that accompany specific genetic and physiologic alterations. Our combined laboratories have produced multiple mutations in the murine opioid system and have developed technology to characterize gene expression in these models using microarrays. We propose two aims in which opioid system KO mice will be used in gene array studies. We will first extend preliminary data that have identified genes that are up- and down-regulated in several opioid receptor mutants. We will identify and characterize genes affected by opioid system disruption in the brain and spinal cord of individual and combinatorial KO mice. Once changes in expression have been confirmed, bioinformatic approaches will be used to determine whether specific functional classes of genes are altered and in situ hybridization will be used identify their cellular sites of expression. Together, these approaches will identify specific genes whose expression is altered by opioid system mutation, reveal the extent of compensatory change that accompanies these mutations, either alone or in combination, and provide initial indications of the functional significance of any changes. Second, we will explore changes in gene expression that accompany morphine administration during the development of analgesic tolerance and dependence to this drug using the above models. We propose to screen acute and chronically morphine-treated wild-type, MOR-1, KOR-1, DOR-1, ORL-l and ENK knock-out mice using microarrays to identify morphine-regulated genes and to determine whether changes in some or all of these morphine-regulated genes are absent in any of the above mutant strains, which all demonstrate deficits in the development of morphine tolerance, dependence, or both. We will extend preliminary data indicating that multiple gene expression changes can be identified following chronic morphine exposure and that at least some of these changes do not arise in MOR-1 mutant mice; we expect that more restricted sets of genes may be altered in other strains, such as DOR-1, ENK, or ORL-l KOs, in which development of analgesic tolerance following chronic morphine treatment is either delayed or abolished. Taken together, these studies should provide detailed, novel information about the relationship between opioid system gene expression and that of other neurotransmitter systems, as well as illuminate the molecular basis for tolerance, dependence and sensitization, which are critical questions in drug abuse research.

Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Research Project (R01)
Project #
5R01DA015237-02
Application #
6625861
Study Section
Special Emphasis Panel (ZRG1-SSS-P (01))
Program Officer
Satterlee, John S
Project Start
2002-06-01
Project End
2006-03-31
Budget Start
2003-04-01
Budget End
2004-03-31
Support Year
2
Fiscal Year
2003
Total Cost
$274,950
Indirect Cost
Name
University of Medicine & Dentistry of NJ
Department
Neurosciences
Type
Schools of Medicine
DUNS #
617022384
City
Piscataway
State
NJ
Country
United States
Zip Code
08854
Grinnell, Steven G; Ansonoff, Michael; Marrone, Gina F et al. (2016) Mediation of buprenorphine analgesia by a combination of traditional and truncated mu opioid receptor splice variants. Synapse 70:395-407
Cominski, T P; Turchin, C E; Hsu, M S et al. (2012) Loss of the mu opioid receptor on different genetic backgrounds leads to increased bromodeoxyuridine labeling in the dentate gyrus only after repeated injection. Neuroscience 206:49-59
Ansonoff, Michael A; Wen, Ting; Pintar, John E (2010) Kappa2 opioid receptor subtype binding requires the presence of the DOR-1 gene. Front Biosci (Schol Ed) 2:772-80
Zhang, Xin; Pan, Hui; Peng, Bonnie et al. (2010) Neuropeptidomic analysis establishes a major role for prohormone convertase-2 in neuropeptide biosynthesis. J Neurochem 112:1168-79
Wen, Ting; Peng, Bonnie; Pintar, John E (2009) The MOR-1 opioid receptor regulates glucose homeostasis by modulating insulin secretion. Mol Endocrinol 23:671-8
Ansonoff, Michael A; Zhang, Jiwen; Czyzyk, Traci et al. (2006) Antinociceptive and hypothermic effects of Salvinorin A are abolished in a novel strain of kappa-opioid receptor-1 knockout mice. J Pharmacol Exp Ther 318:641-8
Pan, Hui; Che, Fa-Yun; Peng, Bonnie et al. (2006) The role of prohormone convertase-2 in hypothalamic neuropeptide processing: a quantitative neuropeptidomic study. J Neurochem 98:1763-77
Cox, Veronica; Clarke, Sian; Czyzyk, Tracy et al. (2005) Autoradiography in opioid triple knockout mice reveals opioid and opioid receptor like binding of naloxone benzoylhydrazone. Neuropharmacology 48:228-35
Kuninger, David; Kuzmickas, Ryan; Peng, Bonnie et al. (2004) Gene discovery by microarray: identification of novel genes induced during growth factor-mediated muscle cell survival and differentiation. Genomics 84:876-89