Defects in the rhodopsin kinase gene in the Oguchi form of stationary night blindness
- 1 February 1997
- journal article
- Published by Springer Nature in Nature Genetics
- Vol. 15 (2) , 175-178
- https://doi.org/10.1038/ng0297-175
Abstract
Oguchi disease is a recessively inherited form of stationary night blindness due to malfunction of the rod photoreceptor mechanism. Patients with this disease show a distinctive golden-brown colour of the fundus that occurs as the retina adapts to light, called the Mizuo phenomenon. Recently a defect in arrestin, a member of the rod phototransduction pathway, was found to cause this disease in some Japanese patients. As rhodopsin kinase works with arrestin in shutting off rhodopsin after it has been activated by a photon of light, it is reasonable to propose that some cases of Oguchi disease might be caused by defects in rhodopsin kinase. This report describes an analysis of the arrestin and rhodopsin kinase genes in three unrelated cases of Oguchi disease. No defects in arrestin were detected, but all three cases had mutations in the rhodopsin kinase gene. Two cases were found to be homozygous for a deletion encompassing exon 5, predicted to lead to a nonfunctional protein. The third case was a compound heterozygote with two allelic mutations, a missense mutation (Val380Asp) affecting a residue in the catalytic domain, and a frameshift mutation (Ser536(4-bp del)) resulting in truncation of the carboxy terminus. Our results indicate that null mutations in the rhodopsin kinase gene are a cause of Oguchi disease and extend the known genetic heterogeneity in congenital stationary night blindness.Keywords
This publication has 17 references indexed in Scilit:
- Characterization and Chromosomal Localization of the Gene for Human Rhodopsin KinaseGenomics, 1996
- A homozygous 1–base pair deletion in the arrestin gene is a frequent cause of Oguchi disease in JapaneseNature Genetics, 1995
- Rhodopsin Phosphorylation and Dephosphorylation in VivoJournal of Biological Chemistry, 1995
- Isoprenylation in regulation of signal transduction by G-protein-coupled receptor kinasesNature, 1992
- The influence of arrestin (48K protein) and rhodopsin kinase on visual transductionNeuron, 1992
- The quantity of rhodopsin in human eyesCurrent Eye Research, 1990
- The photocurrent, noise and spectral sensitivity of rods of the monkey Macaca fascicularis.The Journal of Physiology, 1984
- Kinetics of the Photocurrent of Retinal RodsBiophysical Journal, 1972
- Oguchi's DiseaseArchives of Ophthalmology (1950), 1965
- Dark‐adaptation and the regeneration of rhodopsinThe Journal of Physiology, 1961