Tobacco use is a major health problem. Although current therapies for smoking cessation have had some success, they are inadequate to help all smokers abstain from tobacco use. The reinforcing effects of numerous drugs of abuse, including nicotine, are partially modulated by dopaminergic neurotransmission (Koob and LeMoal, 1997; Di Chiara, 2000; Koob, 2000; Dani and De Biasi, 2001; Nestler, 2002). Cholinergic systems have repeatedly been shown to modulate dopamine release (Dani and Di Biasi, 2001; Kaneko et al., 2000), which act through release of ACh that activates nicotinic acetylcholine receptors (nAChRs). Nicotine exerts its actions through these same receptors. The goals of this project are to assess a number of compounds that are agonists and/or antagonists of nAChRs for their selectivity at various subtypes of nAChRs that modulate dopaminergic activity. Therefore, the primary targets of our efforts are the various subtypes of presynaptic nAChRs in dopaminergic terminal fields. The nAChR population on dopaminergic terminals is quite heterogeneous and includes a substantial fraction that are sensitive to inhibition by a-conotoxin MM (a-CtxMII) that have been shown to be a6?2*-nAChR (the * indicates other subunits may be incorporated, see Lukas et al., 1999 for nAChR nomenclature). This class of nAChR has a very limited distribution in the CNS and somewhat unique pharmacology. It is possible that a selective agonist or antagonist for this class of receptors, alone or in combination with an agonist or antagonist of the a4?2*-nAChR found on GABAergic neurons, could be of use as a therapy for smoking cessation. We intend to screen the test compounds systematically in tissues that naturally express the nAChR of interest using a hierarchical approach as indicated by the following four Specific Aims. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute on Drug Abuse (NIDA)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19DA019375-04
Application #
7491601
Study Section
Special Emphasis Panel (ZMH1-ERB-S (05))
Program Officer
Rapaka, Rao
Project Start
2005-09-30
Project End
2010-08-31
Budget Start
2008-09-01
Budget End
2009-08-31
Support Year
4
Fiscal Year
2008
Total Cost
$880,202
Indirect Cost
Name
California Institute of Technology
Department
Type
Schools of Arts and Sciences
DUNS #
009584210
City
Pasadena
State
CA
Country
United States
Zip Code
91125
Wall, Teagan R; Henderson, Brandon J; Voren, George et al. (2017) TC299423, a Novel Agonist for Nicotinic Acetylcholine Receptors. Front Pharmacol 8:641
Post, Michael R; Lester, Henry A; Dougherty, Dennis A (2017) Probing for and Quantifying Agonist Hydrogen Bonds in ?6?2 Nicotinic Acetylcholine Receptors. Biochemistry 56:1836-1840
Henderson, Brandon J; Wall, Teagan R; Henley, Beverley M et al. (2016) Menthol Alone Upregulates Midbrain nAChRs, Alters nAChR Subtype Stoichiometry, Alters Dopamine Neuron Firing Frequency, and Prevents Nicotine Reward. J Neurosci 36:2957-74
Marks, Michael J; O'Neill, Heidi C; Wynalda-Camozzi, Kelly M et al. (2015) Chronic treatment with varenicline changes expression of four nAChR binding sites in mice. Neuropharmacology 99:142-55
Henderson, Brandon J; Lester, Henry A (2015) Inside-out neuropharmacology of nicotinic drugs. Neuropharmacology 96:178-93
Wieskopf, Jeffrey S; Mathur, Jayanti; Limapichat, Walrati et al. (2015) The nicotinic ?6 subunit gene determines variability in chronic pain sensitivity via cross-inhibition of P2X2/3 receptors. Sci Transl Med 7:287ra72
Henderson, Brandon J; Srinivasan, Rahul; Nichols, Weston A et al. (2014) Nicotine exploits a COPI-mediated process for chaperone-mediated up-regulation of its receptors. J Gen Physiol 143:51-66
Eaton, J Brek; Lucero, Linda M; Stratton, Harrison et al. (2014) The unique ?4+/-?4 agonist binding site in (?4)3(?2)2 subtype nicotinic acetylcholine receptors permits differential agonist desensitization pharmacology versus the (?4)2(?2)3 subtype. J Pharmacol Exp Ther 348:46-58
Wang, Yuexiang; Lee, Jang-Won; Oh, Gyeon et al. (2014) Enhanced synthesis and release of dopamine in transgenic mice with gain-of-function ?6* nAChRs. J Neurochem 129:315-27
Wageman, Charles R; Marks, Michael J; Grady, Sharon R (2014) Effectiveness of nicotinic agonists as desensitizers at presynaptic ?4?2- and ?4?5?2-nicotinic acetylcholine receptors. Nicotine Tob Res 16:297-305

Showing the most recent 10 out of 27 publications