Q344ter is a naturally occurring rhodopsin mutation in humans that causes autosomal dominant retinal degeneration through mechanisms that are not fully understood, but are thought to involve an early termination that removed the trafficking signal, QVAPA, leading to its mislocalization in the rod photoreceptor cell. To better understand the disease mechanism(s), transgenic mice that express Q344ter were generated and crossed with rhodopsin knockout mice. Dark-reared Q344ter(rho+/-) mice exhibited retinal degeneration, demonstrating that rhodopsin mislocalization caused photoreceptor cell death. This degeneration is exacerbated by light-exposure and is correlated with the activation of transducin as well as other G-protein signaling pathways...
Two outstanding unknowns in the biology of photoreceptors are the molecular determinants of cell siz...
<p>(<b>A</b>) Construct used to generate the Q344ter transgenic mice. In an 11-kb BamHI-flanked geno...
We report the chromosomal localization, mutant gene identification, ophthalmic appearance, histology...
UnrestrictedRetinitis pigmentosa (RP) is a heterogeneous group of inherited eye diseases that is typ...
<p>(<b>A</b>) Q344ter<sup>rho+/−</sup> and nontransgenic littermate control mice or (<b>B</b>) Q344t...
<p>Images of retinal sections from epoxy-embedded eyecups were taken just above the optic nerve regi...
Mutations in rod opsin, the visual pigment protein of rod photoreceptors, account for approximately ...
Mutations in the Rhodopsin (Rho) gene can lead to autosomal dominant retinitis pigmentosa (RP) in hu...
Thesis (M.A.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authoriz...
Retinal neurodegeneration occurs in several inherited diseases. Some of the most severe disease alle...
Mutations in the RP1 gene can cause retinitis pigmentosa. We identified a spontaneous L66P mutation ...
Mutations in the RP1 gene can cause retinitis pigmentosa. We identified a spontaneous L66P mutation ...
AbstractRetinal neurodegeneration occurs in several inherited diseases. Some of the most severe dise...
PURPOSE: To engineer a knockin mouse model that can be used to monitor the effects of treatments on ...
Two outstanding unknowns in the biology of photoreceptors are the molecular determinants of cell siz...
Two outstanding unknowns in the biology of photoreceptors are the molecular determinants of cell siz...
<p>(<b>A</b>) Construct used to generate the Q344ter transgenic mice. In an 11-kb BamHI-flanked geno...
We report the chromosomal localization, mutant gene identification, ophthalmic appearance, histology...
UnrestrictedRetinitis pigmentosa (RP) is a heterogeneous group of inherited eye diseases that is typ...
<p>(<b>A</b>) Q344ter<sup>rho+/−</sup> and nontransgenic littermate control mice or (<b>B</b>) Q344t...
<p>Images of retinal sections from epoxy-embedded eyecups were taken just above the optic nerve regi...
Mutations in rod opsin, the visual pigment protein of rod photoreceptors, account for approximately ...
Mutations in the Rhodopsin (Rho) gene can lead to autosomal dominant retinitis pigmentosa (RP) in hu...
Thesis (M.A.)--Boston UniversityPLEASE NOTE: Boston University Libraries did not receive an Authoriz...
Retinal neurodegeneration occurs in several inherited diseases. Some of the most severe disease alle...
Mutations in the RP1 gene can cause retinitis pigmentosa. We identified a spontaneous L66P mutation ...
Mutations in the RP1 gene can cause retinitis pigmentosa. We identified a spontaneous L66P mutation ...
AbstractRetinal neurodegeneration occurs in several inherited diseases. Some of the most severe dise...
PURPOSE: To engineer a knockin mouse model that can be used to monitor the effects of treatments on ...
Two outstanding unknowns in the biology of photoreceptors are the molecular determinants of cell siz...
Two outstanding unknowns in the biology of photoreceptors are the molecular determinants of cell siz...
<p>(<b>A</b>) Construct used to generate the Q344ter transgenic mice. In an 11-kb BamHI-flanked geno...
We report the chromosomal localization, mutant gene identification, ophthalmic appearance, histology...