Molecular properties and structural organization of proteins in retinal rod outer segment (ROS) disk and plasma membranes will be studied to elucidate their functional role in visual excitation and cell-cell recognition and regulation in normal and retinal degenerative disease states. We will study the molecular properties of the high Mr proteins of disk membranes and define their possible role as structural and functional elements in disk-disk and disk-plasma membrane interactions. Monoclonal antibodies will be used with solid-phase radioimmune assays, immunoaffinity chromatography, immunospecific cell membrane labeling and biochemical analysis; i.e. electrophoresis, HPLC peptide mapping, amino acid analysis etc. to purify, quantify and characterize ROS membrane proteins. Their molecular properties and interaction with other proteins including actin and calmodulin will be studied and correlated with the molecular properties of potentially-related cytoskeletal proteins (myosin and spectrin) of other cell types. The effect of limited proteolytic digestion, divalent cations, ionic strength and addition of specific ROS cytoplasmic proteins on the association-dissociation behavior of isolated disks will be studied and correlated with changes in the properties of high Mr proteins and other proteins of disk membranes. Monoclonal antibodies against specific regions of rhodopsin will be characterized with the aim of using these reagents to probe structural organization, conformational changes and functional domains of rhodopsin in disk membranes. Identification and characterization of antigenic sites on rhodopsin will be determined by limited proteolytic digestion of rhodopsin and synthetic peptides in conjunction with RIA assays, HPLC separations, amino acid analysis and protein binding and ion transport assays. ROS plasma membrane will be isolated for analysis of its structural and functional properties. Lectins and monoclonal antibodies will be used in conjunction with newly developed ferromagnetic iron dextran and gold-dextran microspheres to specifically label the outer surface of ROS plasma membranes and separate these membranes from disk membranes by affinity magnetic chromatography and/or affinity density perturbation. Purify and sideness of the ROS plasma membranes will be studied by RIA and lectin binding assays and factors such as Ca++, cGMP, ROS cytoplasmic proteins, etc. affecting Na efflux from these vesicles will be studied. Protein components of Ros plama membranes will also be studied by immunochemical, biochemical and microscopic techniques and compared with those present in disk membranes.

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Research Project (R01)
Project #
5R01EY002422-09
Application #
3256759
Study Section
Visual Sciences A Study Section (VISA)
Project Start
1978-04-01
Project End
1987-03-31
Budget Start
1986-04-01
Budget End
1987-03-31
Support Year
9
Fiscal Year
1986
Total Cost
Indirect Cost
Name
University of British Columbia
Department
Type
DUNS #
800772162
City
Vancouver
State
BC
Country
Canada
Zip Code
V6 1Z3
Li, Rong-Chang; Lin, Chih-Chun; Ren, Xiaozhi et al. (2018) Ca2+-activated Cl current predominates in threshold response of mouse olfactory receptor neurons. Proc Natl Acad Sci U S A 115:5570-5575
McMillan, Hugh J; Telegrafi, Aida; Singleton, Amanda et al. (2018) Recessive mutations in ATP8A2 cause severe hypotonia, cognitive impairment, hyperkinetic movement disorders and progressive optic atrophy. Orphanet J Rare Dis 13:86
Garces, Fabian; Jiang, Kailun; Molday, Laurie L et al. (2018) Correlating the Expression and Functional Activity of ABCA4 Disease Variants With the Phenotype of Patients With Stargardt Disease. Invest Ophthalmol Vis Sci 59:2305-2315
Wang, Jiao; Molday, Laurie L; Hii, Theresa et al. (2018) Proteomic Analysis and Functional Characterization of P4-ATPase Phospholipid Flippases from Murine Tissues. Sci Rep 8:10795
Chalat, Madhavan; Moleschi, Kody; Molday, Robert S (2017) C-terminus of the P4-ATPase ATP8A2 functions in protein folding and regulation of phospholipid flippase activity. Mol Biol Cell 28:452-462
Molday, Robert S; Goldberg, Andrew F X (2017) Peripherin diverts ciliary ectosome release to photoreceptor disc morphogenesis. J Cell Biol 216:1227-1229
Bush, Martin; Setiaputra, Dheva; Yip, Calvin K et al. (2016) Cog-Wheel Octameric Structure of RS1, the Discoidin Domain Containing Retinal Protein Associated with X-Linked Retinoschisis. PLoS One 11:e0147653
Andersen, Jens P; Vestergaard, Anna L; Mikkelsen, Stine A et al. (2016) P4-ATPases as Phospholipid Flippases-Structure, Function, and Enigmas. Front Physiol 7:275
Hickmott, Jack W; Chen, Chih-Yu; Arenillas, David J et al. (2016) PAX6 MiniPromoters drive restricted expression from rAAV in the adult mouse retina. Mol Ther Methods Clin Dev 3:16051
Vinberg, Frans; Wang, Tian; Molday, Robert S et al. (2015) A new mouse model for stationary night blindness with mutant Slc24a1 explains the pathophysiology of the associated human disease. Hum Mol Genet 24:5915-29

Showing the most recent 10 out of 100 publications