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2025

  • Fuchsberger, T., Stockwell, I., Woods, M., Brzosko, Z., Greger, I.H., Paulsen, O. (10th March 2025)
    Dopamine increases protein synthesis in hippocampal neurons enabling dopamine-dependent LTP.
    Elife 13

2024

  • Greger, I.H. (30th December 2024)
    Regulating calcium flux through AMPA glutamate receptors.
    Cell Calcium 123: 102934
  • Ivica, J., et al. (13th October 2024)
    Proton-triggered rearrangement of the AMPA receptor N-terminal domains impacts receptor kinetics and synaptic localization.
    Nat Struct Mol Biol 31(10): 1601-1613
  • Stockwell, I., Watson, J.F., Greger, I.H. (1st July 2024)
    Tuning synaptic strength by regulation of AMPA glutamate receptor localization.
    Bioessays 46(7): e2400006

2023

  • Zhang, D., et al. (13th October 2023)
    Structural mobility tunes signalling of the GluA1 AMPA glutamate receptor.
    Nature 621(7980): 877-882
  • Zhang, D., Lape, R., Shaikh, S.A., Kohegyi, B.K., Watson, J.F., Cais, O., Nakagawa, T., Greger, I.H. (25th March 2023)
    Modulatory mechanisms of TARP γ8-selective AMPA receptor therapeutics.
    Nat Commun 14(1): 1659

2022

  • Herguedas, B., et al. (8th February 2022)
    Mechanisms underlying TARP modulation of the GluA1/2-γ8 AMPA receptor.
    Nat Commun 13(1): 734

2021

  • Matthews, P.M., Pinggera, A., Kampjut, D., Greger, I.H. (1st October 2021)
    Biology of AMPA receptor interacting proteins - From biogenesis to synaptic plasticity.
    Neuropharmacology 197: 108709
  • Hansen, K.B., et al. (2021)
    Structure, Function, and Pharmacology of Glutamate Receptor Ion Channels.
    Pharmacol Rev 73(4): 298-487
  • Rajab, S., Bismin, L., Schwarze, S., Pinggera, A., Greger, I.H., Neuweiler, H. (9th September 2021)
    Allosteric coupling of sub-millisecond clamshell motions in ionotropic glutamate receptor ligand-binding domains.
    Commun Biol 4(1): 1056
  • Watson, J.F., Pinggera, A., Ho, H., Greger, I.H. (23rd August 2021)
    AMPA receptor anchoring at CA1 synapses is determined by N-terminal domain and TARP γ8 interactions.
    Nat Commun 12(1): 5083
  • Zhang, D., Watson, J.F., Matthews, P.M., Cais, O., Greger, I.H. (2nd July 2021)
    Gating and modulation of a hetero-octameric AMPA glutamate receptor.
    Nature 594(7863): 454-458

2020

  • Dohrke, J.N., Watson, J.F., Birchall, K., Greger, I.H. (23rd October 2020)
    Characterizing the binding and function of TARP γ8-selective AMPA receptor modulators.
    J Biol Chem 295(43): 14565-14577
  • Ho, H., Fowle, A., Coetzee, M., Greger, I.H., Watson, J.F. (1st August 2020)
    An inhalation anaesthesia approach for neonatal mice allowing streamlined stereotactic injection in the brain.
    J Neurosci Methods 342: 108824

2019

  • Greger, I.H., Mayer, M.L. (8th August 2019)
    Structural biology of glutamate receptor ion channels: towards an understanding of mechanism.
    Curr Opin Struct Biol 57: 185-195
  • Herguedas, B., Watson, J.F., Ho, H., Cais, O., García-Nafría, J., Greger, I.H. (26th May 2019)
    Architecture of the heteromeric GluA1/2 AMPA receptor in complex with the auxiliary subunit TARP γ8.
    Science 364(6438)
  • Krieger, J., Lee, J.Y., Greger, I.H., Bahar, I. (1st May 2019)
    Activation and desensitization of ionotropic glutamate receptors by selectively triggering pre-existing motions.
    Neurosci Lett 700: 22-29
  • Lee, J.Y., et al. (5th March 2019)
    Druggability Simulations and X-Ray Crystallography Reveal a Ligand-Binding Site in the GluA3 AMPA Receptor N-Terminal Domain.
    Structure 27(2): 241-252.e3
  • Buonarati, O.R., Hammes, E.A., Watson, J.F., Greger, I.H., Hell, J.W. (1st January 2019)
    Mechanisms of postsynaptic localization of AMPA-type glutamate receptors and their regulation during long-term potentiation.
    Sci Signal 12(562)

2017

  • Davies, B., et al. (15th October 2017)
    A point mutation in the ion conduction pore of AMPA receptor GRIA3 causes dramatically perturbed sleep patterns as well as intellectual disability.
    Hum Mol Genet 26(20): 3869-3882
  • Greger, I.H., Watson, J.F., Cull-Candy, S.G. (17th May 2017)
    Structural and Functional Architecture of AMPA-Type Glutamate Receptors and Their Auxiliary Proteins.
    Neuron 94(4): 713-730
  • Watson, J.F., Ho, H., Greger, I.H. (14th March 2017)
    Synaptic transmission and plasticity require AMPA receptor anchoring via its N-terminal domain.
    Elife 6

2016

  • García-Nafría, J., Herguedas, B., Watson, J.F., Greger, I.H. (1st October 2016)
    The dynamic AMPA receptor extracellular region: a platform for synaptic protein interactions.
    J Physiol 594(19): 5449-58
  • Elegheert, J., et al. (15th July 2016)
    Structural basis for integration of GluD receptors within synaptic organizer complexes.
    Science 353(6296): 295-9
  • García-Nafría, J., Watson, J.F., Greger, I.H. (6th June 2016)
    IVA cloning: A single-tube universal cloning system exploiting bacterial In Vivo Assembly.
    Sci Rep 6: 27459
  • Herguedas, B., et al. (29th May 2016)
    Structure and organization of heteromeric AMPA-type glutamate receptors.
    Science 352(6285): aad3873

2015

  • Krieger, J., Bahar, I., Greger, I.H. (15th October 2015)
    Structure, Dynamics, and Allosteric Potential of Ionotropic Glutamate Receptor N-Terminal Domains.
    Biophys J 109(6): 1136-48
  • Dutta, A., Krieger, J., Lee, J.Y., Garcia-Nafria, J., Greger, I.H., Bahar, I. (1st October 2015)
    Cooperative Dynamics of Intact AMPA and NMDA Glutamate Receptors: Similarities and Subfamily-Specific Differences.
    Structure 23(9): 1692-1704
  • Taylor, J.C., et al. (18th July 2015)
    Factors influencing success of clinical genome sequencing across a broad spectrum of disorders.
    Nat Genet 47(7): 717-726

2014

  • Cais, O., Herguedas, B., Krol, K., Cull-Candy, S.G., Farrant, M., Greger, I.H. (23rd October 2014)
    Mapping the interaction sites between AMPA receptors and TARPs reveals a role for the receptor N-terminal domain in channel gating.
    Cell Rep 9(2): 728-40

2013

  • Penn, A.C., Balik, A., Greger, I.H. (18th April 2013)
    Reciprocal regulation of A-to-I RNA editing and the vertebrate nervous system.
    Front Neurosci 7: 61
  • Balik, A., Penn, A.C., Nemoda, Z., Greger, I.H. (20th January 2013)
    Activity-regulated RNA editing in select neuronal subfields in hippocampus.
    Nucleic Acids Res 41(2): 1124-34
  • Penn, A.C., Balik, A., Greger, I.H. (20th January 2013)
    Steric antisense inhibition of AMPA receptor Q/R editing reveals tight coupling to intronic editing sites and splicing.
    Nucleic Acids Res 41(2): 1113-23
  • Herguedas, B., Krieger, J., Greger, I.H. (2013)
    Receptor heteromeric assembly-how it works and why it matters: the case of ionotropic glutamate receptors.
    Prog Mol Biol Transl Sci 117: 361-86

2012

  • Penn, A.C., Balik, A., Wozny, C., Cais, O., Greger, I.H. (8th December 2012)
    Activity-mediated AMPA receptor remodeling, driven by alternative splicing in the ligand-binding domain.
    Neuron 76(3): 503-10
  • Dutta, A., Shrivastava, I.H., Sukumaran, M., Greger, I.H., Bahar, I. (7th December 2012)
    Comparative dynamics of NMDA- and AMPA-glutamate receptor N-terminal domains.
    Structure 20(11): 1838-49
  • Shanks, N.F., et al. (28th July 2012)
    Differences in AMPA and kainate receptor interactomes facilitate identification of AMPA receptor auxiliary subunit GSG1L.
    Cell Rep 1(6): 590-8
  • Sukumaran, M., Penn, A.C., Greger, I.H. (2012)
    AMPA receptor assembly: atomic determinants and built-in modulators.
    Adv Exp Med Biol 970: 241-64

2011

  • Jensen, M.H., Sukumaran, M., Johnson, C.M., Greger, I.H., Neuweiler, H. (18th December 2011)
    Intrinsic motions in the N-terminal domain of an ionotropic glutamate receptor detected by fluorescence correlation spectroscopy.
    J Mol Biol 414(1): 96-105
  • Sukumaran, M., Rossmann, M., Shrivastava, I., Dutta, A., Bahar, I., Greger, I.H. (2nd March 2011)
    Dynamics and allosteric potential of the AMPA receptor N-terminal domain.
    EMBO J 30(5): 972-82
  • Rossmann, M., Sukumaran, M., Penn, A.C., Veprintsev, D.B., Babu, M.M., Greger, I.H. (2nd March 2011)
    Subunit-selective N-terminal domain associations organize the formation of AMPA receptor heteromers.
    EMBO J 30(5): 959-71

2009

  • Penn, A.C., Greger, I.H. (18th November 2009)
    Sculpting AMPA receptor formation and function by alternative RNA processing.
    RNA Biol 6(5): 517-21

2008

  • Penn, A.C., Williams, S.R., Greger, I.H. (19th December 2008)
    Gating motions underlie AMPA receptor secretion from the endoplasmic reticulum.
    EMBO J 27(22): 3056-68

2007

  • Greger, I.H., Ziff, E.B., Penn, A.C. (16th August 2007)
    Molecular determinants of AMPA receptor subunit assembly.
    Trends Neurosci 30(8): 407-16
  • Greger, I.H., Esteban, J.A. (1st July 2007)
    AMPA receptor biogenesis and trafficking.
    Curr Opin Neurobiol 17(3): 289-97

2006

  • Greger, I.H., Akamine, P., Khatri, L., Ziff, E.B. (6th July 2006)
    Developmentally regulated, combinatorial RNA processing modulates AMPA receptor biogenesis.
    Neuron 51(1): 85-97

2003

  • Greger, I.H., Khatri, L., Kong, X., Ziff, E.B. (13th December 2003)
    AMPA receptor tetramerization is mediated by Q/R editing.
    Neuron 40(4): 763-74

2002

  • Greger, I.H., Khatri, L., Ziff, E.B. (30th May 2002)
    RNA editing at arg607 controls AMPA receptor exit from the endoplasmic reticulum.
    Neuron 34(5): 759-72

2000

  • Greger, I.H., Aranda, A., Proudfoot, N. (18th July 2000)
    Balancing transcriptional interference and initiation on the GAL7 promoter of Saccharomyces cerevisiae.
    Proc Natl Acad Sci U S A 97(15): 8415-20
  • Boyd, D.C., Greger, I.H., Murphy, S. (18th May 2000)
    In vivo footprinting studies suggest a role for chromatin in transcription of the human 7SK gene.
    Gene 247(1-2): 33-44

1998

  • Greger, I.H., Proudfoot, N.J. (17th August 1998)
    Poly(A) signals control both transcriptional termination and initiation between the tandem GAL10 and GAL7 genes of Saccharomyces cerevisiae.
    EMBO J 17(16): 4771-9
  • Greger, I.H., Demarchi, F., Giacca, M., Proudfoot, N.J. (1st March 1998)
    Transcriptional interference perturbs the binding of Sp1 to the HIV-1 promoter.
    Nucleic Acids Res 26(5): 1294-301
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