» Articles » PMID: 32994336

TARPs Modulate Receptor-Mediated Paired-Pulse Depression and Recovery from Desensitization

Overview
Journal J Neurosci
Specialty Neurology
Date 2020 Sep 30
PMID 32994336
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Transmembrane AMPA receptor regulatory proteins (TARPs) are auxiliary AMPA receptor subunits that play a key role in receptor trafficking and in modulating receptor gating. The ability of TARPs to slow both deactivation and desensitization is isoform specific. However, TARP isoform-specific modulation of receptor properties remains uncharacterized. Here, we compare the isoform-specific effects of γ-2, γ-3, γ-4, and γ-8 TARPs on recovery from desensitization and responses to pairs of brief applications of glutamate. All four isoforms were able to reduce receptor-mediated paired-pulse depression and significantly speed recovery from desensitization in an isoform-specific manner. In the presence of TARPs, recovery time courses were observed to contain two components, fast and slow. The proportion of fast and slow components was determined by the TARP isoform. The time constant of recovery was also altered by the duration of glutamate application. When studies with TARP chimeras were performed, TARP extracellular loops were found to play a vital role in TARP modulation of recovery. Thus, isoform-specific differences in TARP modulation of recovery from desensitization influence receptor responses to repeated brief applications of glutamate, and these differences may impact frequency-dependent synaptic signaling in the mammalian central nervous system. AMPA receptors are major determinants of excitatory synaptic strength. The channel kinetics of AMPA receptors contribute to the kinetics of synaptic transmission. Transmembrane AMPA receptor regulatory proteins (TARPs) auxiliary subunits can modulate the decay kinetics of AMPA receptors. However, whether TARP isoforms specifically modulate receptor recovery is unclear. Here, we investigated the recovery kinetics of AMPA receptors by expressing various TARP isoforms and chimeras. We observed that the TARP isoforms and duration of glutamate application uniquely modulate time constants and the proportion of fast and slow components through a previously unidentified TARP domain. Given the impact of recovery kinetics on receptor responses to repetitive stimulation such as synaptic transmission, this work will be of great interest in the field of excitatory synaptic transmission research.

Citing Articles

Structural dynamics in α-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid receptor gating.

Gonzalez C, Jayaraman V Curr Opin Struct Biol. 2024; 87:102833.

PMID: 38733862 PMC: 11283939. DOI: 10.1016/j.sbi.2024.102833.


Enhanced TARP-γ8-PSD-95 coupling in excitatory neurons contributes to the rapid antidepressant-like action of ketamine in male mice.

Xue S, He J, Lu L, Song S, Chen M, Wang F Nat Commun. 2023; 14(1):7971.

PMID: 38042894 PMC: 10693574. DOI: 10.1038/s41467-023-42780-8.


GSG1L-containing AMPA receptor complexes are defined by their spatiotemporal expression, native interactome and allosteric sites.

Perozzo A, Schwenk J, Kamalova A, Nakagawa T, Fakler B, Bowie D Nat Commun. 2023; 14(1):6799.

PMID: 37884493 PMC: 10603098. DOI: 10.1038/s41467-023-42517-7.


Structural mobility tunes signalling of the GluA1 AMPA glutamate receptor.

Zhang D, Ivica J, Krieger J, Ho H, Yamashita K, Stockwell I Nature. 2023; 621(7980):877-882.

PMID: 37704721 PMC: 10533411. DOI: 10.1038/s41586-023-06528-0.


Influence of the TARP γ8-Selective Negative Allosteric Modulator JNJ-55511118 on AMPA Receptor Gating and Channel Conductance.

Coombs I, Sexton C, Cull-Candy S, Farrant M Mol Pharmacol. 2022; 101(5):343-356.

PMID: 35246481 PMC: 7615793. DOI: 10.1124/molpharm.121.000473.


References
1.
Turetsky D, Garringer E, Patneau D . Stargazin modulates native AMPA receptor functional properties by two distinct mechanisms. J Neurosci. 2005; 25(32):7438-48. PMC: 6725298. DOI: 10.1523/JNEUROSCI.1108-05.2005. View

2.
Riva I, Eibl C, Volkmer R, Carbone A, Plested A . Control of AMPA receptor activity by the extracellular loops of auxiliary proteins. Elife. 2017; 6. PMC: 5599240. DOI: 10.7554/eLife.28680. View

3.
Armstrong N, Jasti J, Beich-Frandsen M, Gouaux E . Measurement of conformational changes accompanying desensitization in an ionotropic glutamate receptor. Cell. 2006; 127(1):85-97. DOI: 10.1016/j.cell.2006.08.037. View

4.
Carbone A, Plested A . Superactivation of AMPA receptors by auxiliary proteins. Nat Commun. 2016; 7:10178. PMC: 4729862. DOI: 10.1038/ncomms10178. View

5.
Patneau D, Mayer M . Kinetic analysis of interactions between kainate and AMPA: evidence for activation of a single receptor in mouse hippocampal neurons. Neuron. 1991; 6(5):785-98. DOI: 10.1016/0896-6273(91)90175-y. View