Mutation of a TADR Protein Leads to Rhodopsin and G q -Dependent Retinal Degeneration in Drosophila
The Drosophila photoreceptor is a model system for genetic study of retinal degeneration. Many gene mutations cause fly photoreceptor degeneration, either because of excessive stimulation of the visual transduction (phototransduction) cascade, or through apoptotic pathways that in many cases involve...
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Veröffentlicht in: | The Journal of neuroscience 2008-12, Vol.28 (50), p.13478-13487 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The
Drosophila
photoreceptor is a model system for genetic study of retinal degeneration. Many gene mutations cause fly photoreceptor degeneration, either because of excessive stimulation of the visual transduction (phototransduction) cascade, or through apoptotic pathways that in many cases involve a visual arrestin Arr2. Here we report a gene named
tadr
(for
t
orn
a
nd
d
iminished
r
habdomeres), which, when mutated, leads to photoreceptor degeneration through a different mechanism. Degeneration in the
tadr
mutant is characterized by shrunk and disrupted rhabdomeres, the light sensory organelles of photoreceptor. The TADR protein interacted
in vitro
with the major light receptor Rh1 rhodopsin, and genetic reduction of the Rh1 level suppressed the
tadr
mutation-caused degeneration, suggesting the degeneration is Rh1-dependent. Nonetheless, removal of phospholipase C (PLC), a key enzyme in phototransduction, and that of Arr2 failed to inhibit rhabdomeral degeneration in the
tadr
mutant background. Biochemical analyses revealed that, in the
tadr
mutant, the G
q
protein of Rh1 is defective in dissociation from the membrane during light stimulation. Importantly, reduction of G
q
level by introducing a hypomorphic allele of
G
α
q
gene greatly inhibited the
tadr
degeneration phenotype. These results may suggest that loss of a potential TADR-Rh1 interaction leads to an abnormality in the G
q
signaling, which in turn triggers rhabdomeral degeneration independent of the PLC phototransduction cascade. We propose that TADR-like proteins may also protect photoreceptors from degeneration in mammals including humans. |
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ISSN: | 0270-6474 1529-2401 |
DOI: | 10.1523/JNEUROSCI.2122-08.2008 |