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Yorodumi- PDB-6mm9: Diheteromeric NMDA receptor GluN1/GluN2A in the '1-Knuckle' confo... -
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Open data
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Basic information
| Entry | Database: PDB / ID: 6mm9 | |||||||||
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| Title | Diheteromeric NMDA receptor GluN1/GluN2A in the '1-Knuckle' conformation, in complex with glycine and glutamate, in the presence of 1 micromolar zinc chloride, and at pH 6.1 | |||||||||
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Keywords | TRANSPORT PROTEIN / Ligand-gated Ion Channel / NMDA Receptor / ionotropic Glutamate Receptors / membrane protein | |||||||||
| Function / homology | Function and homology informationneurotransmitter receptor transport, plasma membrane to endosome / regulation of response to alcohol / response to ammonium ion / receptor recycling / directional locomotion / response to environmental enrichment / pons maturation / positive regulation of Schwann cell migration / regulation of cell communication / EPHB-mediated forward signaling ...neurotransmitter receptor transport, plasma membrane to endosome / regulation of response to alcohol / response to ammonium ion / receptor recycling / directional locomotion / response to environmental enrichment / pons maturation / positive regulation of Schwann cell migration / regulation of cell communication / EPHB-mediated forward signaling / Assembly and cell surface presentation of NMDA receptors / response to hydrogen sulfide / auditory behavior / olfactory learning / conditioned taste aversion / dendritic branch / regulation of respiratory gaseous exchange / response to other organism / protein localization to postsynaptic membrane / serotonin metabolic process / regulation of ARF protein signal transduction / cellular response to magnesium ion / transmitter-gated monoatomic ion channel activity / positive regulation of inhibitory postsynaptic potential / suckling behavior / response to methylmercury / response to manganese ion / response to glycine / propylene metabolic process / sleep / response to carbohydrate / locomotion / regulation of NMDA receptor activity / dendritic spine organization / cellular response to dsRNA / cellular response to lipid / regulation of monoatomic cation transmembrane transport / RAF/MAP kinase cascade / NMDA glutamate receptor activity / Synaptic adhesion-like molecules / voltage-gated monoatomic cation channel activity / response to glycoside / NMDA selective glutamate receptor complex / glutamate binding / ligand-gated sodium channel activity / neurotransmitter receptor complex / response to morphine / regulation of axonogenesis / glutamate receptor signaling pathway / calcium ion transmembrane import into cytosol / neuromuscular process / regulation of dendrite morphogenesis / protein heterotetramerization / male mating behavior / regulation of synapse assembly / glycine binding / spinal cord development / response to amine / parallel fiber to Purkinje cell synapse / cellular response to zinc ion / startle response / monoatomic cation transmembrane transport / dopamine metabolic process / positive regulation of reactive oxygen species biosynthetic process / response to lithium ion / positive regulation of calcium ion transport into cytosol / regulation of postsynaptic membrane potential / response to light stimulus / cellular response to glycine / modulation of excitatory postsynaptic potential / associative learning / action potential / conditioned place preference / excitatory synapse / positive regulation of dendritic spine maintenance / monoatomic cation transport / social behavior / regulation of neuronal synaptic plasticity / monoatomic ion channel complex / positive regulation of protein targeting to membrane / glutamate receptor binding / Unblocking of NMDA receptors, glutamate binding and activation / positive regulation of excitatory postsynaptic potential / long-term memory / synaptic cleft / neuron development / prepulse inhibition / phosphatase binding / positive regulation of synaptic transmission, glutamatergic / multicellular organismal response to stress / postsynaptic density, intracellular component / monoatomic cation channel activity / calcium ion homeostasis / response to fungicide / glutamate-gated receptor activity / cell adhesion molecule binding / regulation of neuron apoptotic process / cellular response to manganese ion / glutamate-gated calcium ion channel activity / presynaptic active zone membrane Similarity search - Function | |||||||||
| Biological species | ![]() | |||||||||
| Method | ELECTRON MICROSCOPY / single particle reconstruction / cryo EM / Resolution: 5.97 Å | |||||||||
Authors | Jalali-Yazdi, F. / Chowdhury, S. / Yoshioka, C. / Gouaux, E. | |||||||||
| Funding support | United States, 2items
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Citation | Journal: Cell / Year: 2018Title: Mechanisms for Zinc and Proton Inhibition of the GluN1/GluN2A NMDA Receptor. Authors: Farzad Jalali-Yazdi / Sandipan Chowdhury / Craig Yoshioka / Eric Gouaux / ![]() Abstract: N-methyl-D-aspartate receptors (NMDARs) play essential roles in memory formation, neuronal plasticity, and brain development, with their dysfunction linked to a range of disorders from ischemia to ...N-methyl-D-aspartate receptors (NMDARs) play essential roles in memory formation, neuronal plasticity, and brain development, with their dysfunction linked to a range of disorders from ischemia to schizophrenia. Zinc and pH are physiological allosteric modulators of NMDARs, with GluN2A-containing receptors inhibited by nanomolar concentrations of divalent zinc and by excursions to low pH. Despite the widespread importance of zinc and proton modulation of NMDARs, the molecular mechanism by which these ions modulate receptor activity has proven elusive. Here, we use cryoelectron microscopy to elucidate the structure of the GluN1/GluN2A NMDAR in a large ensemble of conformations under a range of physiologically relevant zinc and proton concentrations. We show how zinc binding to the amino terminal domain elicits structural changes that are transduced though the ligand-binding domain and result in constriction of the ion channel gate. | |||||||||
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Structure visualization
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| Structure viewer | Molecule: Molmil Jmol/JSmol |
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Downloads & links
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Download
| PDBx/mmCIF format | 6mm9.cif.gz | 558.9 KB | Display | PDBx/mmCIF format |
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| PDB format | pdb6mm9.ent.gz | 459.8 KB | Display | PDB format |
| PDBx/mmJSON format | 6mm9.json.gz | Tree view | PDBx/mmJSON format | |
| Others | Other downloads |
-Validation report
| Summary document | 6mm9_validation.pdf.gz | 1.3 MB | Display | wwPDB validaton report |
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| Full document | 6mm9_full_validation.pdf.gz | 1.4 MB | Display | |
| Data in XML | 6mm9_validation.xml.gz | 92.1 KB | Display | |
| Data in CIF | 6mm9_validation.cif.gz | 134.1 KB | Display | |
| Arichive directory | https://data.pdbj.org/pub/pdb/validation_reports/mm/6mm9 ftp://data.pdbj.org/pub/pdb/validation_reports/mm/6mm9 | HTTPS FTP |
-Related structure data
| Related structure data | ![]() 9147MC ![]() 9148C ![]() 9149C ![]() 9150C ![]() 9151C ![]() 9152C ![]() 9153C ![]() 9154C ![]() 9155C ![]() 9156C ![]() 9157C ![]() 9158C ![]() 9159C ![]() 9160C ![]() 9161C ![]() 9162C ![]() 9163C ![]() 9164C ![]() 9165C ![]() 6mmaC ![]() 6mmbC ![]() 6mmgC ![]() 6mmhC ![]() 6mmiC ![]() 6mmjC ![]() 6mmkC ![]() 6mmlC ![]() 6mmmC ![]() 6mmnC ![]() 6mmpC ![]() 6mmrC ![]() 6mmsC ![]() 6mmtC ![]() 6mmuC ![]() 6mmvC ![]() 6mmwC ![]() 6mmxC M: map data used to model this data C: citing same article ( |
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| Similar structure data |
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Links
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Assembly
| Deposited unit | ![]()
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Components
| #1: Protein | Mass: 94189.781 Da / Num. of mol.: 2 / Fragment: UNP residues 1-838 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Homo sapiens (human) / References: UniProt: P35439#2: Protein | Mass: 93740.352 Da / Num. of mol.: 2 / Fragment: UNP residues 1-837 Source method: isolated from a genetically manipulated source Source: (gene. exp.) ![]() Homo sapiens (human) / References: UniProt: Q00959#3: Sugar | ChemComp-NAG / Has protein modification | Y | |
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-Experimental details
-Experiment
| Experiment | Method: ELECTRON MICROSCOPY |
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| EM experiment | Aggregation state: PARTICLE / 3D reconstruction method: single particle reconstruction |
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Sample preparation
| Component | Name: Diheteromeric NMDA receptor GluN1/GluN2A in the '1-Knuckle' conformation, in complex with glycine and glutamate, in the presence of 1 micromolar zinc chloride, and at pH 6.1 Type: COMPLEX Details: Sample was heterologously expressed in TSA-201 cells, detergent solubilized, and affinity purified Entity ID: #1-#2 / Source: RECOMBINANT | |||||||||||||||||||||||||
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| Molecular weight | Value: 0.5 MDa / Experimental value: NO | |||||||||||||||||||||||||
| Source (natural) | Organism: ![]() | |||||||||||||||||||||||||
| Source (recombinant) | Organism: Homo sapiens (human) / Cell: TSA-201 | |||||||||||||||||||||||||
| Buffer solution | pH: 6.1 | |||||||||||||||||||||||||
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| Specimen | Conc.: 4 mg/ml / Embedding applied: NO / Shadowing applied: NO / Staining applied: NO / Vitrification applied: YES / Details: This sample was monodisperse | |||||||||||||||||||||||||
| Specimen support | Grid material: GOLD / Grid mesh size: 300 divisions/in. / Grid type: Quantifoil R1.2/1.3 | |||||||||||||||||||||||||
| Vitrification | Instrument: FEI VITROBOT MARK IV / Cryogen name: ETHANE / Humidity: 100 % / Chamber temperature: 291 K / Details: Sample was blotted for 3 seconds at blot force 1. |
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Electron microscopy imaging
| Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company |
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| Microscopy | Model: FEI TITAN KRIOS |
| Electron gun | Electron source: FIELD EMISSION GUN / Accelerating voltage: 300 kV / Illumination mode: FLOOD BEAM |
| Electron lens | Mode: BRIGHT FIELD / Cs: 2.7 mm |
| Image recording | Average exposure time: 22 sec. / Electron dose: 52 e/Å2 / Film or detector model: GATAN K2 BASE (4k x 4k) / Num. of grids imaged: 1 / Num. of real images: 2163 |
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Processing
| Software | Name: PHENIX / Version: 1.13_2998: / Classification: refinement | |||||||||||||||||||||||||||||||||
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| EM software |
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| CTF correction | Type: PHASE FLIPPING AND AMPLITUDE CORRECTION | |||||||||||||||||||||||||||||||||
| Symmetry | Point symmetry: C1 (asymmetric) | |||||||||||||||||||||||||||||||||
| 3D reconstruction | Resolution: 5.97 Å / Resolution method: FSC 0.143 CUT-OFF / Num. of particles: 94934 / Algorithm: FOURIER SPACE Details: After additional rounds of refinement/further classification, the final particle set for each class was exported to cisTEM (Grant et al., 2018). Further refinement in cisTEM was carried out ...Details: After additional rounds of refinement/further classification, the final particle set for each class was exported to cisTEM (Grant et al., 2018). Further refinement in cisTEM was carried out by masking out the micelle, while keeping the TMD of the receptors for alignment. The area outside of the mask was filtered to 20 A and down-weighted for alignment. For a more accurate and conservative resolution estimate, the cisTEM-generated half-maps were used in RELION to generate the Fourier Shell Coefficient (FSC) curve, and the resolution was calculated at FSC = 0.143 (Scheres and Chen, 2012). Num. of class averages: 1 / Symmetry type: POINT | |||||||||||||||||||||||||||||||||
| Atomic model building | Protocol: RIGID BODY FIT | |||||||||||||||||||||||||||||||||
| Atomic model building | 3D fitting-ID: 1 / Source name: PDB / Type: experimental model
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United States, 2items
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Homo sapiens (human)





