RRC ID 45865
著者 Tehrani N, Del Rosario J, Dominguez M, Kalb R, Mano I.
タイトル The insulin/IGF signaling regulators cytohesin/GRP-1 and PIP5K/PPK-1 modulate susceptibility to excitotoxicity in C. elegans.
ジャーナル PLoS One
Abstract During ischemic stroke, malfunction of excitatory amino acid transporters and reduced synaptic clearance causes accumulation of Glutamate (Glu) and excessive stimulation of postsynaptic neurons, which can lead to their degeneration by excitotoxicity. The balance between cell death-promoting (neurotoxic) and survival-promoting (neuroprotective) signaling cascades determines the fate of neurons exposed to the excitotoxic insult. The evolutionary conserved Insulin/IGF Signaling (IIS) cascade can participate in this balance, as it controls cell stress resistance in nematodes and mammals. Blocking the IIS cascade allows the transcription factor FoxO3/DAF-16 to accumulate in the nucleus and activate a transcriptional program that protects cells from a range of insults. We study the effect of IIS cascade on neurodegeneration in a C. elegans model of excitotoxicity, where a mutation in a central Glu transporter (glt-3) in a sensitizing background causes Glu-Receptor -dependent neuronal necrosis. We expand our studies on the role of the IIS cascade in determining susceptibility to excitotoxic necrosis by either blocking IIS at the level of PI3K/AGE-1 or stimulating it by removing the inhibitory effect of ZFP-1 on the expression of PDK-1. We further show that the components of the Cytohesin/GRP-1, Arf, and PIP5K/PPK-1 complex, known to regulate PIP2 production and the IIS cascade, modulate nematode excitotoxicity: mutations that are expected to reduce the complex's ability to produce PIP2 and inhibit the IIS cascade protect from excitotoxicity, while overstimulation of PIP2 production enhances neurodegeneration. Our observations therefore affirm the importance of the IIS cascade in determining the susceptibility to necrotic neurodegeneration in nematode excitotoxicity, and demonstrate the ability of Cytohesin/GRP-1, Arf, and PIP5K/PPK-1 complex to modulate neuroprotection.
巻・号 9(11)
ページ e113060
公開日 2014-1-1
DOI 10.1371/journal.pone.0113060
PII PONE-D-14-09830
PMID 25422944
PMC PMC4244091
MeSH Animals Apoptosis* Caenorhabditis elegans / genetics Caenorhabditis elegans / metabolism* Caenorhabditis elegans Proteins / genetics Caenorhabditis elegans Proteins / metabolism* Guanine Nucleotide Exchange Factors / genetics Guanine Nucleotide Exchange Factors / metabolism* Insulin / metabolism Necrosis / metabolism Neurons / metabolism* Neurons / pathology Neurons / physiology Phosphatidylinositol 3-Kinases / genetics Phosphatidylinositol 3-Kinases / metabolism Phosphotransferases (Alcohol Group Acceptor) / genetics Phosphotransferases (Alcohol Group Acceptor) / metabolism* Signal Transduction* Somatomedins / metabolism Transcription Factors / genetics Transcription Factors / metabolism
IF 2.74
引用数 6
WOS 分野 NEUROSCIENCES
リソース情報
線虫 tm1956