Literature DB >> 34079129

Gating and modulation of a hetero-octameric AMPA glutamate receptor.

Danyang Zhang1, Jake F Watson1,2, Peter M Matthews1, Ondrej Cais1, Ingo H Greger3.   

Abstract

AMPA receptors (AMPARs) mediate the majority of excitatory transmission in the brain and enable the synaptic plasticity that underlies learning1. A diverse array of AMPAR signalling complexes are established by receptor auxiliary subunits, which associate with the AMPAR in various combinations to modulate trafficking, gating and synaptic strength2. However, their mechanisms of action are poorly understood. Here we determine cryo-electron microscopy structures of the heteromeric GluA1-GluA2 receptor assembled with both TARP-γ8 and CNIH2, the predominant AMPAR complex in the forebrain, in both resting and active states. Two TARP-γ8 and two CNIH2 subunits insert at distinct sites beneath the ligand-binding domains of the receptor, with site-specific lipids shaping each interaction and affecting the gating regulation of the AMPARs. Activation of the receptor leads to asymmetry between GluA1 and GluA2 along the ion conduction path and an outward expansion of the channel triggers counter-rotations of both auxiliary subunit pairs, promoting the active-state conformation. In addition, both TARP-γ8 and CNIH2 pivot towards the pore exit upon activation, extending their reach for cytoplasmic receptor elements. CNIH2 achieves this through its uniquely extended M2 helix, which has transformed this endoplasmic reticulum-export factor into a powerful AMPAR modulator that is capable of providing hippocampal pyramidal neurons with their integrative synaptic properties.

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Year:  2021        PMID: 34079129      PMCID: PMC7611729          DOI: 10.1038/s41586-021-03613-0

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  51 in total

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Review 3.  Glutamate receptor ion channels: structure, regulation, and function.

Authors:  Stephen F Traynelis; Lonnie P Wollmuth; Chris J McBain; Frank S Menniti; Katie M Vance; Kevin K Ogden; Kasper B Hansen; Hongjie Yuan; Scott J Myers; Ray Dingledine
Journal:  Pharmacol Rev       Date:  2010-09       Impact factor: 25.468

4.  Functional proteomics identify cornichon proteins as auxiliary subunits of AMPA receptors.

Authors:  Jochen Schwenk; Nadine Harmel; Gerd Zolles; Wolfgang Bildl; Akos Kulik; Bernd Heimrich; Osamu Chisaka; Peter Jonas; Uwe Schulte; Bernd Fakler; Nikolaj Klöcker
Journal:  Science       Date:  2009-03-06       Impact factor: 47.728

5.  Cornichon2 dictates the time course of excitatory transmission at individual hippocampal synapses.

Authors:  Sami Boudkkazi; Aline Brechet; Jochen Schwenk; Bernd Fakler
Journal:  Neuron       Date:  2014-05-21       Impact factor: 17.173

6.  TARP gamma-8 controls hippocampal AMPA receptor number, distribution and synaptic plasticity.

Authors:  Nathalie Rouach; Keith Byrd; Ronald S Petralia; Guillermo M Elias; Hillel Adesnik; Susumu Tomita; Siavash Karimzadegan; Colin Kealey; David S Bredt; Roger A Nicoll
Journal:  Nat Neurosci       Date:  2005-10-09       Impact factor: 24.884

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Authors:  Wei Lu; Yun Shi; Alexander C Jackson; Kirsten Bjorgan; Matthew J During; Rolf Sprengel; Peter H Seeburg; Roger A Nicoll
Journal:  Neuron       Date:  2009-04-30       Impact factor: 17.173

8.  Differences in AMPA and kainate receptor interactomes facilitate identification of AMPA receptor auxiliary subunit GSG1L.

Authors:  Natalie F Shanks; Jeffrey N Savas; Tomohiko Maruo; Ondrej Cais; Atsushi Hirao; Souichi Oe; Anirvan Ghosh; Yasuko Noda; Ingo H Greger; John R Yates; Terunaga Nakagawa
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Journal:  Neuron       Date:  2017-05-17       Impact factor: 17.173

10.  Regional diversity and developmental dynamics of the AMPA-receptor proteome in the mammalian brain.

Authors:  Jochen Schwenk; David Baehrens; Alexander Haupt; Wolfgang Bildl; Sami Boudkkazi; Jochen Roeper; Bernd Fakler; Uwe Schulte
Journal:  Neuron       Date:  2014-09-18       Impact factor: 17.173

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2.  Structural Investigation of the Interaction Mechanism between Chlorogenic Acid and AMPA Receptor via In Silico Approaches.

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3.  Mutually Dependent Clustering of SynDIG4/PRRT1 and AMPA Receptor Subunits GluA1 and GluA2 in Heterologous Cells and Primary Neurons.

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Review 5.  RNA Editing: A New Therapeutic Target in Amyotrophic Lateral Sclerosis and Other Neurological Diseases.

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6.  Mechanisms underlying TARP modulation of the GluA1/2-γ8 AMPA receptor.

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9.  Allosteric coupling of sub-millisecond clamshell motions in ionotropic glutamate receptor ligand-binding domains.

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