The long-term goal of this project is to elucidate the molecular mechanisms of photoreceptor excitation and degeneration using single-step Drosophila mutants isolated for this purpose. Because evidence uncovered during the current project period suggests that the mechanisms of photoreceptor excitation and degeneration are closely related, mutations affecting both processes will be investigated. These mutations define at least 25 genes. Double mutants will be constructed in pairwise combinations to identify a subfamily of interdependent genes among the 25 genes being tested. Detailed genetic, electrophysiological, and morphological analyses will be carried out on the mutants identified by the double mutant studies. Attempts will be made to clone at least one, and hopefully as many as three, genes during the proposed project period. One of the main objectives of isolating these genes is to probe the human genome for homologous sequences. This may be one of the very few viable approaches for isolating human genes involved in photoreceptor degeneration presently available. In addition, additional mutations will be isolated in the ninaE gene, the presumptive R1-6 opsin structural gene, and these mutations will be investigated in detail to carry out structure-function analyses on the gene at the molecular level.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
2R01EY000033-16
Application #
3255083
Study Section
Genetics Study Section (GEN)
Project Start
1974-10-01
Project End
1989-11-30
Budget Start
1984-12-01
Budget End
1985-11-30
Support Year
16
Fiscal Year
1985
Total Cost
Indirect Cost
Name
Purdue University
Department
Type
Schools of Arts and Sciences
DUNS #
072051394
City
West Lafayette
State
IN
Country
United States
Zip Code
47907
Kim, Eunju; Shino, Shikoh; Yoon, Jaeseung et al. (2012) In search of proteins that are important for synaptic functions in Drosophila visual system. J Neurogenet 26:151-7
Leung, Hung-Tat; Shino, Shikoh; Kim, Eunju (2012) The regulations of Drosophila phototransduction. J Neurogenet 26:144-50
Pak, William L; Shino, Shikoh; Leung, Hung-Tat (2012) PDA (prolonged depolarizing afterpotential)-defective mutants: the story of nina's and ina's--pinta and santa maria, too. J Neurogenet 26:216-37
Pak, William L (2010) Why Drosophila to study phototransduction? J Neurogenet 24:55-66
Lu, Haiqin; Leung, Hung-Tat; Wang, Ning et al. (2009) Role of Ca2+/calmodulin-dependent protein kinase II in Drosophila photoreceptors. J Biol Chem 284:11100-9
Shahrestani, Parvin; Leung, Hung-Tat; Le, Phung Khanh et al. (2009) Heterozygous mutation of Drosophila Opa1 causes the development of multiple organ abnormalities in an age-dependent and organ-specific manner. PLoS One 4:e6867
Long, A Ashleigh; Kim, Eunju; Leung, Hung-Tat et al. (2008) Presynaptic calcium channel localization and calcium-dependent synaptic vesicle exocytosis regulated by the Fuseless protein. J Neurosci 28:3668-82
Leung, Hung-Tat; Tseng-Crank, Julie; Kim, Eunju et al. (2008) DAG lipase activity is necessary for TRP channel regulation in Drosophila photoreceptors. Neuron 58:884-96
Pak, W L (1991) Molecular genetic studies of photoreceptor function using Drosophila mutants. Prog Clin Biol Res 362:1-32