4.8 Article

Structural Basis of Functional Transitions in Mammalian NMDA Receptors

Journal

CELL
Volume 182, Issue 2, Pages 357-+

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2020.05.052

Keywords

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Funding

  1. NIH [NS111745, MH085926]
  2. Robertson funds at Cold Spring Harbor Laboratory
  3. Doug Fox Alzheimer's Fund
  4. Austin's Purpose
  5. Heartfelt Wing Alzheimer's Fund
  6. Gertrude and Louis Feil Family Trust

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Excitatory neurotransmission meditated by glutamate receptors including N-methyl-D-aspartate receptors (NMDARs) is pivotal to brain development and function. NMDARs are heterotetramers composed of GIuN1 and GluN2 subunits, which bind glycine and glutamate, respectively, to activate their ion channels. Despite importance in brain physiology, the precise mechanisms by which activation and inhibition occur via subunit-specific binding of agonists and antagonists remain largely unknown. Here, we show the detailed patterns of conformational changes and inter-subunit and -domain reorientation leading to agonist-gating and subunit-dependent competitive inhibition by providing multiple structures in distinct ligand states at 4 angstrom or better. The structures reveal that activation and competitive inhibition by both GIuN1 and GIuN2 antagonists occur by controlling the tension of the linker between the ligand-binding domain and the transmembrane ion channel of the GIuN2 subunit. Our results provide detailed mechanistic insights into NMDAR pharmacology, activation, and inhibition, which are fundamental to the brain physiology.

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