RRC ID 46117
Author Hofler C, Koelle MR.
Title AGS-3 alters Caenorhabditis elegans behavior after food deprivation via RIC-8 activation of the neural G protein G αo.
Journal J Neurosci
Abstract Proteins containing the G protein regulator (GPR) domain bind the major neural G protein Gα(o) in vitro. However, the biological functions of GPR proteins in neurons remain undefined, and based on the in vitro activities of GPR proteins it is unclear whether these proteins activate or inhibit G protein signaling in vivo. We found that the conserved GPR domain protein AGS-3 activates Gα(o) signaling in vivo to allow Caenorhabditis elegans to alter several behaviors after food deprivation, apparently so that the animals can more effectively seek food. AGS-3 undergoes a progressive change in its biochemical fractionation upon food deprivation, suggesting that effects of food deprivation are mediated by modifying this protein. We analyzed one C. elegans food-regulated behavior in depth; AGS-3 activates Gα(o) in the ASH chemosensory neurons to allow food-deprived animals to delay response to the aversive stimulus octanol. Genetic epistasis experiments show the following: (1) AGS-3 and the guanine nucleotide exchange factor RIC-8 act in ASH in a mutually dependent fashion to activate Gα(o); (2) this activation requires interaction of the GPR domains of AGS-3 with Gα(o); and (3) Gα(o)-GTP is ultimately the signaling molecule that acts in ASH to delay octanol response. These results identify a biological role for AGS-3 in response to food deprivation and indicate the mechanism for its activation of Gα(o) signaling in vivo.
Volume 31(32)
Pages 11553-62
Published 2011-8-10
DOI 10.1523/JNEUROSCI.2072-11.2011
PII 31/32/11553
PMID 21832186
PMC PMC3161416
MeSH Animals Animals, Genetically Modified Caenorhabditis elegans Caenorhabditis elegans Proteins / metabolism Caenorhabditis elegans Proteins / physiology* Cells, Cultured Drosophila Food Deprivation / physiology* GTP-Binding Protein alpha Subunits, Gi-Go / metabolism* GTP-Binding Protein alpha Subunits, Gi-Go / physiology Guanine Nucleotide Dissociation Inhibitors / metabolism Guanine Nucleotide Dissociation Inhibitors / physiology* Guanine Nucleotide Exchange Factors Humans Neurons / metabolism* Nuclear Proteins / metabolism* Nuclear Proteins / physiology Protein Binding / genetics Signal Transduction / genetics
IF 5.674
Times Cited 16
WOS Category NEUROSCIENCES
Resource
C.elegans tm2342 tm2375