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

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作者
Amanda M. Perozzo
Jochen Schwenk
Aichurok Kamalova
Terunaga Nakagawa
Bernd Fakler
Derek Bowie
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[1] McGill University,Integrated Program in Neuroscience
[2] McGill University,Department of Pharmacology and Therapeutics
[3] University of Freiburg,Institute of Physiology, Faculty of Medicine
[4] Vanderbilt University School of Medicine,Department of Molecular Physiology and Biophysics, Vanderbilt Brain Institute
[5] Vanderbilt University School of Medicine,Center for Structural Biology
[6] University of Freiburg,Signaling Research Centers BIOSS and CIBSS
[7] Schänzlestr. 18,undefined
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Transmembrane AMPA receptor regulatory proteins (TARPs) and germ cell-specific gene 1-like protein (GSG1L) are claudin-type AMPA receptor (AMPAR) auxiliary subunits that profoundly regulate glutamatergic synapse strength and plasticity. While AMPAR-TARP complexes have been extensively studied, less is known about GSG1L-containing AMPARs. Here, we show that GSG1L’s spatiotemporal expression, native interactome and allosteric sites are distinct. GSG1L generally expresses late during brain development in a region-specific manner, constituting about 5% of all AMPAR complexes in adulthood. While GSG1L can co-assemble with TARPs or cornichons (CNIHs), it also assembles as the sole auxiliary subunit. Unexpectedly, GSG1L acts through two discrete evolutionarily-conserved sites on the agonist-binding domain with a weak allosteric interaction at the TARP/KGK site to slow desensitization, and a stronger interaction at a different site that slows recovery from desensitization. Together, these distinctions help explain GSG1L’s evolutionary past and how it fulfills a unique signaling role within glutamatergic synapses.
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  • [1] GSG1L-containing AMPA receptor complexes are defined by their spatiotemporal expression, native interactome and allosteric sites
    Perozzo, Amanda M.
    Schwenk, Jochen
    Kamalova, Aichurok
    Nakagawa, Terunaga
    Fakler, Bernd
    Bowie, Derek
    [J]. NATURE COMMUNICATIONS, 2023, 14 (01)
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    [J]. BIOPHYSICAL JOURNAL, 2022, 121 (03) : 382A - 382A
  • [3] Structure and desensitization of AMPA receptor complexes with type II TARP γ5 and GSG1L
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    Gangwar, Shanti Pal
    Yelshanskaya, Maria V.
    Yen, Laura
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    [J]. MOLECULAR CELL, 2021, 81 (23) : 4771 - +