Keywords: Ampakine; AMPA receptor; Stargazin; TARP;
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Tarps differentially affect the pharmacology of ampakines
Keywords: Ampakine; AMPA receptor; Stargazin; TARP;
Selective loss of AMPA receptor subunits at inhibitory neuron synapses in the cerebellum of the ataxic stargazer mouse
Keywords: GluA subunits; Stargazin; Synaptic plasticity; Cerebellum; Ataxia; Immunogold
Stargazin and AMPA receptor membrane expression is increased in the somatosensory cortex of Genetic Absence Epilepsy Rats from Strasbourg
Keywords: AMPA receptors; Stargazin; Absence epilepsy; Animal models; GAERS; Somatosensory cortex
Calpain-mediated regulation of stargazin in adult rat brain
Keywords: calpain; stargazin; AMPA receptors; hippocampus; plasticityRT, room temperature; TARPs, transmembrane AMPA receptor associated proteins
Two modes of interaction between the membrane-embedded TARP stargazin's C-terminal domain and the bilayer visualized by electron crystallography
Keywords: Three dimensional electron microscopy; Two-dimensional crystallization; Electron crystallography; Transmembrane AMPA receptor regulatory protein; Stargazin; AMPAR; α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptor; TARP; transmembrane AMPAR
Polarized sorting of AMPA receptors to the somatodendritic domain is regulated by adaptor protein AP-4
Keywords: AMPA receptor; Glutamate receptor; Stargazin; Adaptor protein; Membrane trafficking; Polarized sorting; Autophagy
Critical role for TARPs in early development despite broad functional redundancy
Keywords: AMPA receptor; Stargazer; Stargazin; TARP; Knockout mice; Glutamate; Excitatory amino acid receptor; Electrophysiology; Neurotransmission; Neurotransmitter; Membrane trafficking; LTP; Hippocampus; CA1; Spinal cord; Cortex; CACNG;
Transmembrane AMPA receptor regulatory proteins and AMPA receptor function in the cerebellum
Keywords: stargazin; synaptic transmission; cerebellar cells; glutamate receptors; single-channels; AMPAR; AMPA receptor; BG; Bergmann glia; BiP; Ig binding protein; CI; calcium impermeable; CP; calcium permeable; ER; endoplasmic reticulum; GC; granule cell; nPIST;
Functional modulation of AMPA receptors by transmembrane AMPA receptor regulatory proteins
Keywords: glutamate receptor; stargazin; trafficking; auxiliary subunit; plasticity; electrophysiology; CaMKII; calcium/calmodulin kinase II; EC50; half-maximal effective concentration; ER; endoplasmic reticulum; IKA/IGlu ratio; ratio of kainate- to glutamate-induc
Comparative analysis of the pharmacology of GluR1 in complex with transmembrane AMPA receptor regulatory proteins γ2, γ3, γ4, and γ8
Keywords: stargazin; AMPA receptor; glutamate receptor; NASP; CNQX; quinoxaline; CaR; Ca-Ringer; CNQX; 6-cyano-7-nitroquinoxaline-2,3-dione; CTD; C-terminal domain; CTZ; cyclothiazide; DNQX; 6,7-dinitroquinoxaline-2,3(1H,4H)-dione; EGTA; ethylene glycol-bis(2-amino
Research ReportLoss of calcium channels in the cerebellum of the ataxic and epileptic stargazer mutant mouse
Keywords: Stargazin; Calcium channel; BDNF; Cerebellum; Ataxia; Immunogold; Synaptoneurosome;
Genetic absence epilepsy rats from Strasbourg have increased corticothalamic expression of stargazin
Keywords: Stargazin; Absence epilepsy; Animal models; GAERS; AMPA receptors; Somatosensory cortex; Thalamus
The fast kinetics of AMPA GluR3 receptors is selectively modulated by the TARPs γ4 and γ8
Keywords: TARPs, transmembrane AMPA receptor-associated regulatory proteins; KA, kainate.Deactivation time constant; Desensitization; Mean conductance; Stargazin; gamma-4; gamma-8
Stargazin modulates AMPA receptor antagonism
Keywords: Stargazin; AMPA receptor; TARP; GYKI; CNQX; Partial agonist
Stargazin interacts functionally with the AMPA receptor glutamate-binding module
Keywords: Stargazin; AMPA receptor; Trafficking; Learning; Plasticity
Myotonic dystrophy CTG repeat expansion alters Ca2+ channel functional expression in PC12 cells
Keywords: Ca2+ channels; CTG repeats; Myotonic dystrophy; DMPK; Real-time RT-PCR; Stargazin
Spatial diversity in gene expression for VDCCγ subunit family in developing and adult mouse brains
Keywords: VDCCγ subunit; Stargazin; TARPs; Development; mRNA; In situ hybridization; Brain;