Back to Search Start Over

Dependence on a Retinophilin/Myosin Complex for Stability of PKC and INAD and Termination of Phototransduction.

Authors :
Venkatachalam, Kartik
Wasserman, David
Xiaoyue Wang
Ruoxia Li
Mills, Eric
Elsaesser, Rebecca
Hong-Sheng Li
Montell, Craig
Source :
Journal of Neuroscience; 8/25/2010, Vol. 30 Issue 34, p11337-11345, 9p, 5 Diagrams, 1 Graph
Publication Year :
2010

Abstract

Normal termination of signaling is essential to reset signaling cascades, especially those such as phototransduction that are turned on and off with great rapidity. Genetic approaches in Drosophila led to the identification of several proteins required for termination, including protein kinase C (PKC), NINAC (neither inactivation nor afterpotential C) p174, which consists of fused protein kinase and myosin domains, and a PDZ (postsynaptic density-95/Discs Large/zona occludens-1) scaffold protein, INAD (inactivation no afterpotential D). Here, we describe a mutation affecting a poorly characterized but evolutionarily conserved protein, Retinophilin (Retin), which is expressed primarily in the phototransducing compartment of photoreceptor cells, the rhabdomeres. Retin and NINAC formed a complex and were mutually dependent on each other for expression. Loss of retin resulted in an age-dependent impairment in termination of phototransduction. Mutations that affect termination of the photoresponse typically lead to a reduction in levels of the major rhodopsin (Rh1) to attenuate signaling. Consistent with the slower termination in retin¹, the mutant photoreceptor cells exhibited increased endocytosis of Rh1 and a decline in Rh1 protein. The slower termination in retin1 was a consequence of a cascade of defects, which began with the reduction in NINAC p174 levels. The diminished p174 concentration caused a decrease in INAD. Because PKC requires interaction with INAD for protein stability, this leads to reduction in PKC levels. The decline in PKC was age dependent and paralleled the onset of the termination phenotype in retin¹ mutant flies. We conclude that the slower termination of the photoresponse in retin¹ resulted from a requirement for the Retin/NINAC complex for stability of INAD and PKC. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
30
Issue :
34
Database :
Complementary Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
53848897
Full Text :
https://doi.org/10.1523/JNEUROSCI.2709-10.2010