The investigations proposed deal with three classes of putative transmitters and or neuromodulators in mammalian retinas and are concerned with characterizing their distributions, receptors, influences on cyclic AMP levels in target neurons, possible interactions between systems utilizing these molecules, and gaining clues as to their physiological significance. The first of these is adenosine, which we have found to influence cyclic AMP levels in the rabbit retina and to be taken up by specific neurons in the rabbit and mouse retinas. The second class is indoleamines. We have found in long inbred strains of mice that tryptamine or serotonin but not melatonin prevents the accumulation of a light- sensitive pool of cyclic AMP in what our evidence suggests to be photoreceptors. In addition, it has been reported that long inbred mouse lines but not mouse lines recently inbred from wild strains appear to lack pineal melatonin and enzymes involved in its biosynthesis. Unless regulatory genes are involved, this may also hold for their retinas, and an opportunity may be at hand to help define the role of melatonin in mammalian retinas. The third class of transmitter/modulators is dopamine, which when applied to mouse retinas in micromolar concentrations, appears to counter the above effects of tryptamine or light on a light-sensitive pool of cyclic AMP. Adenosine is also reported to interact with dopamine release.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY002294-12
Application #
3256661
Study Section
Visual Sciences A Study Section (VISA)
Project Start
1978-02-01
Project End
1992-06-30
Budget Start
1990-07-01
Budget End
1991-06-30
Support Year
12
Fiscal Year
1990
Total Cost
Indirect Cost
Name
Washington University
Department
Type
Schools of Medicine
DUNS #
062761671
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Verhoeven, Virginie J M; Hysi, Pirro G; Wojciechowski, Robert et al. (2013) Genome-wide meta-analyses of multiancestry cohorts identify multiple new susceptibility loci for refractive error and myopia. Nat Genet 45:314-8
Hueter, R E; Murphy, C J; Howland, M et al. (2001) Refractive state and accommodation in the eyes of free-swimming versus restrained juvenile lemon sharks (Negaprion brevirostris). Vision Res 41:1885-9
McIntosh, H H; Blazynski, C (1994) Characterization and localization of adenosine A2 receptors in bovine rod outer segments. J Neurochem 62:992-7
Blazynski, C (1993) Characterization of adenosine A2 receptors in bovine retinal pigment epithelial membranes. Exp Eye Res 56:595-9
Blazynski, C; McIntosh, H (1993) Characterization of adenosine A2 receptors in bovine retinal membranes. Exp Eye Res 56:585-93
Blazynski, C; Woods, C; Mathews, G C (1992) Evidence for the action of endogenous adenosine in the rabbit retina: modulation of the light-evoked release of acetylcholine. J Neurochem 58:761-7
McIntosh, H; Blazynski, C (1992) Muscarinic receptor stimulated GTPase activity in synaptic membranes from bovine retina. J Neurochem 59:210-5
Woods, C L; Blazynski, C (1991) Characterization of adenosine A1-receptor binding sites in bovine retinal membranes. Exp Eye Res 53:325-31
Blazynski, C; Perez, M T (1991) Adenosine in vertebrate retina: localization, receptor characterization, and function. Cell Mol Neurobiol 11:463-84
McIntosh, H; Blazynski, C (1991) GAP-43-like immunoreactivity in the adult retina of several species. Brain Res 554:321-4

Showing the most recent 10 out of 22 publications