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A Truncated Form of Rod Photoreceptor PDE6 β-subunit Causes Autosomal Dominant Congenital Stationary Night Blindness by Interfering with the Inhibitory Activity of the γ-subunit

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Journal PLoS One
Date 2014 Apr 25
PMID 24760071
Citations 14
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Abstract

Autosomal dominant congenital stationary night blindness (adCSNB) is caused by mutations in three genes of the rod phototransduction cascade, rhodopsin (RHO), transducin α-subunit (GNAT1), and cGMP phosphodiesterase type 6 β-subunit (PDE6B). In most cases, the constitutive activation of the phototransduction cascade is a prerequisite to cause adCSNB. The unique adCSNB-associated PDE6B mutation found in the Rambusch pedigree, the substitution p.His258Asn, leads to rod photoreceptors desensitization. Here, we report a three-generation French family with adCSNB harboring a novel PDE6B mutation, the duplication, c.928-9_940dup resulting in a tyrosine to cysteine substitution at codon 314, a frameshift, and a premature termination (p.Tyr314Cysfs*50). To understand the mechanism of the PDE6β1-314fs*50 mutant, we examined the properties of its PDE6-specific portion, PDE6β1-313. We found that PDE6β1-313 maintains the ability to bind noncatalytic cGMP and the inhibitory γ-subunit (Pγ), and interferes with the inhibition of normal PDE6αβ catalytic subunits by Pγ. Moreover, both truncated forms of the PDE6β protein, PDE6β1-313 and PDE6β1-314fs*50 expressed in rods of transgenic X. laevis are targeted to the phototransduction compartment. We hypothesize that in affected family members the p.Tyr314Cysfs*50 change results in the production of the truncated protein, which binds Pγ and causes constitutive activation of the phototransduction thus leading to the absence of rod adaptation.

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References
1.
Gal A, Orth U, Baehr W, Schwinger E, Rosenberg T . Heterozygous missense mutation in the rod cGMP phosphodiesterase beta-subunit gene in autosomal dominant stationary night blindness. Nat Genet. 1994; 7(1):64-8. DOI: 10.1038/ng0594-64. View

2.
Yarfitz S, Hurley J . Transduction mechanisms of vertebrate and invertebrate photoreceptors. J Biol Chem. 1994; 269(20):14329-32. View

3.
Moussaif M, Rubin W, Kerov V, Reh R, Chen D, Lem J . Phototransduction in a transgenic mouse model of Nougaret night blindness. J Neurosci. 2006; 26(25):6863-72. PMC: 6673833. DOI: 10.1523/JNEUROSCI.1322-06.2006. View

4.
Al-Jandal N, Farrar G, Kiang A, Humphries M, Bannon N, Findlay J . A novel mutation within the rhodopsin gene (Thr-94-Ile) causing autosomal dominant congenital stationary night blindness. Hum Mutat. 1999; 13(1):75-81. DOI: 10.1002/(SICI)1098-1004(1999)13:1<75::AID-HUMU9>3.0.CO;2-4. View

5.
Deterre P, Bigay J, Forquet F, Robert M, Chabre M . cGMP phosphodiesterase of retinal rods is regulated by two inhibitory subunits. Proc Natl Acad Sci U S A. 1988; 85(8):2424-8. PMC: 280009. DOI: 10.1073/pnas.85.8.2424. View