Back to Search Start Over

GPR179 is required for depolarizing bipolar cell function and is mutated in autosomal-recessive complete congenital stationary night blindness

Authors :
Peachey, N.S. (Neal )
Ray, T.A. (Thomas A.)
Florijn, R.J. (Ralph)
Rowe, L.B. (Lucy )
Sjoerdsma, T. (Trijntje)
Contreras-Alcantara, S. (Susana)
Baba, K. (Kenkichi)
Tosini, G. (Gianluca)
Pozdeyev, N. (Nikita)
Iuvone, P.M. (P. Michael)
Bojang Jr., P. (Pasano)
Pearring, J.N. (Jillian )
Simonsz, H.J. (Huib)
Genderen, M.M. (Maria) van
Birch, D.G. (David )
Traboulsi, E.I. (Elias)
Dorfman, A. (Allison)
Lopez, I. (Irma)
Ren, H. (Huanan)
Goldberg, A.F.X. (Andrew )
Nishina, P.M. (Patsy)
Lachapelle, P. (Pierre)
McCall, M.A. (Maureen )
Koenekoop, R.K. (Robert)
Bergen, A.A.B. (Arthur)
Kamermans, M. (Maarten)
Gregg, R.G. (Ronald)
Peachey, N.S. (Neal )
Ray, T.A. (Thomas A.)
Florijn, R.J. (Ralph)
Rowe, L.B. (Lucy )
Sjoerdsma, T. (Trijntje)
Contreras-Alcantara, S. (Susana)
Baba, K. (Kenkichi)
Tosini, G. (Gianluca)
Pozdeyev, N. (Nikita)
Iuvone, P.M. (P. Michael)
Bojang Jr., P. (Pasano)
Pearring, J.N. (Jillian )
Simonsz, H.J. (Huib)
Genderen, M.M. (Maria) van
Birch, D.G. (David )
Traboulsi, E.I. (Elias)
Dorfman, A. (Allison)
Lopez, I. (Irma)
Ren, H. (Huanan)
Goldberg, A.F.X. (Andrew )
Nishina, P.M. (Patsy)
Lachapelle, P. (Pierre)
McCall, M.A. (Maureen )
Koenekoop, R.K. (Robert)
Bergen, A.A.B. (Arthur)
Kamermans, M. (Maarten)
Gregg, R.G. (Ronald)
Publication Year :
2012

Abstract

Complete congenital stationary night blindness (cCSNB) is a clinically and genetically heterogeneous group of retinal disorders characterized by nonprogressive impairment of night vision, absence of the electroretinogram (ERG) b-wave, and variable degrees of involvement of other visual functions. We report here that mutations in GPR179, encoding an orphan G protein receptor, underlie a form of autosomal-recessive cCSNB. The Gpr179nob5/nob5mouse model was initially discovered by the absence of the ERG b-wave, a component that reflects depolarizing bipolar cell (DBC) function. We performed genetic mapping, followed by next-generation sequencing of the critical region and detected a large transposon-like DNA insertion in Gpr179. The involvement of GPR179 in DBC function was confirmed in zebrafish and humans. Functional knockdown of gpr179 in zebrafish led to a marked reduction in the amplitude of the ERG b-wave. Candidate gene analysis of GPR179 in DNA extracted from patients with cCSNB identified GPR179-inactivating mutations in two patients. We developed an antibody against mouse GPR179, which robustly labeled DBC dendritic terminals in wild-type mice. This labeling colocalized with the expression of GRM6 and was absent in Gpr179nob5/nob5mutant mice. Our results demonstrate that GPR179 plays a critical role in DBC signal transduction and expands our understanding of the mechanisms that mediate normal rod vision.

Details

Database :
OAIster
Notes :
American Journal of Human Genetics vol. 90 no. 2, pp. 331-339, English
Publication Type :
Electronic Resource
Accession number :
edsoai.ocn929963582
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1016.j.ajhg.2011.12.006