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  1. pmc.ncbi.nlm.nih.gov

    Like non-NMDAR subunits, every NMDAR subunit is composed of an amino-terminal domain (ATD), a ligand-binding domain (LBD), a transmembrane domain (TMD), and a carboxy-terminal domain (CTD). ... Ligand-specific deactivation time course of GluN1/GluN2D NMDA receptors. Nature communications 2011, 2:294. [PMC free article] [Google Scholar] 28 ...
  2. (A) Schematic representation of a full-length GluN1/GluN2 NMDAR. NMDARs display a modular architecture consisting of four domains: two large bilobate (clamshell-like) extracellular domains—the N-terminal domain (NTD) and the agonist-binding domain (ABD)—a transmembrane domain (TMD) where the ion channel resides, and an intracellular carboxy-terminal domain (CTD).
  3. pmc.ncbi.nlm.nih.gov

    Model of NMDAR-mediated quasi-synaptic communication between adjacent VSMCs in pulmonary circulation. A recent investigation by Dumas and coworkers proposed a quasi-synaptic mode of glutamatergic communication via NMDARs between adjacent VSMCs in human pulmonary circulation. According to this mode, glutamate (Glu) is formed directly from ...
  4. pmc.ncbi.nlm.nih.gov

    Anti-NMDAR autoimmune encephalitis has been identified as an entity that is associated with epilepsy. The diagnosis of anti-NMDAR encephalitis is confirmed by the detection of cerebrospinal fluid antibodies against the GluN1 subunit of the NMDAR. Two potential triggers of autoimmune encephalitides are tumors and viral encephalitis.
  5. jneurosci.org

    Introduction. The N-methyl-d-aspartate (NMDA) receptor (NMDAR), a member of the glutamate-gated cation channel family, is ubiquitously expressed in the brain (Moriyoshi et al., 1991), where it plays numerous roles, most notably in neurodevelopment, synaptic transmission and plasticity, and learning and memory (Traynelis et al., 2010; Paoletti et al., 2013; Iacobucci and Popescu, 2017).
  6. ncbi.nlm.nih.gov

    National Center for Biotechnology Information

    https://www.ncbi.nlm.nih.gov › pmc › articles › PMC7311790

    The N-methyl-D-aspartate receptor (NMDAR) provides a pathway for glutamate-mediated inter-cellular communication, best known for its role in the brain but with multiple examples of functionality in non-neuronal cells.Data previously published by others and us provided ex vivo evidence that NMDARs regulate platelet and red blood cell (RBC) production.
  7. pubmed.ncbi.nlm.nih.gov

    This review discusses the distinct NMDAR subtypes and their function at synaptic, perisynaptic, and extrasynaptic sites of excitatory and inhibitory neurons. Many neurons express more than one of the modulatory NR2 subunits that participate in the formation of di- and/or triheteromeric channel assemblies (e.g., NR1/NR2A, NR1/NR2B, and/or NR1 ...
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