This project will use recombinant ion channels to define the molecular sites of action of inhaled anesthetics. During the past grant cycle, the project demonstrated diverse anesthetic actions on several ion channels--in particular, type A gamma-aminobutyric acid (GABAA) and glycine receptors. The studies prompted and aided Dr. Homanics' construction of mutant mice that were subsequently characterized in vivo by Drs. Sonner and Eger. The results illustrate the utility of a multidisciplinary approach and reveal the complexity of anesthetic actions. Although anesthetics affect many protein targets in ways that plausibly explain anesthesia, the relative importance of each target is not known. Such results prompt the proposed studies of multiple targets including glycine and N-methyI-D-aspartate (NMDA) receptors, and specific sodium channels. We will modify these receptors and channels to provide information on mechanisms, including provision of templates for examination of other ionophores. We propose that inhaled anesthetics bind in, and thereby encroach upon, water-filled cavities formed by transmembrane regions of ion channels. If the cavity volume critically affects channel gating, the presence of anesthetic in the cavity will alter channel function. Specifically, we hypothesize that effects on glycine, NMDA, and some voltage-activated sodium channels mediate primary effects of anesthetics, and that a fuller understanding of anesthesia requires examination of molecular mechanisms of action on these channels, as well as new molecular and genetic tools for the study of these channels in vivo.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Program Projects (P01)
Project #
5P01GM047818-14
Application #
7478419
Study Section
Special Emphasis Panel (ZGM1)
Project Start
Project End
Budget Start
2007-08-01
Budget End
2008-07-31
Support Year
14
Fiscal Year
2007
Total Cost
$305,873
Indirect Cost
Name
University of California San Francisco
Department
Type
DUNS #
094878337
City
San Francisco
State
CA
Country
United States
Zip Code
94143
Cai, Xiaoyun; Huang, Huizhen; Kuzirian, Marissa S et al. (2016) Generation of a KOR-Cre knockin mouse strain to study cells involved in kappa opioid signaling. Genesis 54:29-37
Zarnowska, E D; Rodgers, F C; Oh, I et al. (2015) Etomidate blocks LTP and impairs learning but does not enhance tonic inhibition in mice carrying the N265M point mutation in the beta3 subunit of the GABA(A) receptor. Neuropharmacology 93:171-178
Burkat, Paul M; Lor, Chong; Perouansky, Misha et al. (2014) Enhancement of ?5-containing ?-aminobutyric acid type A receptors by the nonimmobilizer 1,2-dichlorohexafluorocyclobutane (F6) is abolished by the ?3(N265M) mutation. Anesth Analg 119:1277-84
Iyer, Sangeetha V; Chandra, Dave; Homanics, Gregg E (2014) GABAA-R ?4 subunits are required for the low dose locomotor stimulatory effect of alphaxalone, but not for several other behavioral responses to alphaxalone, etomidate or propofol. Neurochem Res 39:1048-56
Blednov, Yuri A; Benavidez, Jill M; Homanics, Gregg E et al. (2012) Behavioral characterization of knockin mice with mutations M287L and Q266I in the glycine receptor ?1 subunit. J Pharmacol Exp Ther 340:317-29
Borghese, Cecilia M; Blednov, Yuri A; Quan, Yu et al. (2012) Characterization of two mutations, M287L and Q266I, in the ?1 glycine receptor subunit that modify sensitivity to alcohols. J Pharmacol Exp Ther 340:304-16
Pearce, R A; Duscher, P; Van Dyke, K et al. (2012) Isoflurane impairs odour discrimination learning in rats: differential effects on short- and long-term memory. Br J Anaesth 108:630-7
Harris, R A; Osterndorff-Kahanek, E; Ponomarev, I et al. (2011) Testing the silence of mutations: Transcriptomic and behavioral studies of GABA(A) receptor ýý1 and ýý2 subunit knock-in mice. Neurosci Lett 488:31-5
Rau, Vinuta; Oh, Irene; Liao, Mark et al. (2011) Gamma-aminobutyric acid type A receptor *3 subunit forebrain-specific knockout mice are resistant to the amnestic effect of isoflurane. Anesth Analg 113:500-4
Blednov, Y A; Borghese, C M; McCracken, M L et al. (2011) Loss of ethanol conditioned taste aversion and motor stimulation in knockin mice with ethanol-insensitive ýý2-containing GABA(A) receptors. J Pharmacol Exp Ther 336:145-54

Showing the most recent 10 out of 167 publications