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Home › Products › Ion Channels › Ligand-Gated Ion Channels › Glutamate Receptors › NMDA Receptors › Antibodies to NMDA Receptors

Certificate of Analysis

Anti-NMDAR2A (GluN2A) (extracellular)-ATTO Fluor-488 Antibody

NMDA receptor 2A, NR2A, GRIN2A, Ionotropic glutamate receptor subunit ε1, N-methyl-D-aspartate receptor subunit 2A

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Overview

Cat #: AGC-002-AG
Alternative Name NMDA receptor 2A, NR2A, GRIN2A, Ionotropic glutamate receptor subunit ε1, N-methyl-D-aspartate receptor subunit 2A
Lyophilized Powder yes
Type: Polyclonal
Host: Rabbit
Reactivity: h, m, r
Immunogen
  • Peptide GHSHDVTERELRN(C), corresponding to amino acid residues 41-53 of rat NR2A (Accession Q00959). Extracellular, N-terminus.
Accession (Uniprot) Number Q00959
Gene ID 24409
Peptide confirmation Confirmed by amino acid analysis and mass spectrometry.
Homology Human, mouse - identical.
RRID AB_2756596.
Purity Affinity purified on immobilized antigen.
Form Lyophilized powder. Reconstituted antibody contains phosphate buffered saline (PBS), pH 7.4, 1% BSA, 0.05% NaN3.
Isotype Rabbit IgG.
Label ATTO-488. Maximum absorption 501 nm; maximum fluorescence 523 nm. The fluorescence is excited most efficiently in the 480 – 515 nm range. This label is analogous to the well known dye fluorescein isothiocyanate (FITC) and can be used with filters typically used to detect FITC.
Storage before reconstitution The antibody ships as a lyophilized powder at room temperature. Upon arrival, it should be stored at -20°C.
Reconstitution 50 µl double distilled water (DDW).
Antibody concentration after reconstitution 1 mg/ml.
Storage after reconstitution The reconstituted solution can be stored at 4°C, protected from the light, for up to 1 week. For longer periods, small aliquots should be stored at -20°C. Avoid multiple freezing and thawing. Centrifuge all antibody preparations before use (10000 × g 5 min).
Standard quality control of each lot Western blot analysis (unlabeled antibody,#AGC-002), and immunohistochemistry (labeled antibody).
Applications: if, ih
May also work in: ic*, lci*
Immunohistochemistry
  • Mouse brain sections (frozen), (1:80).
  • Expression of NR2A in mouse brain sections
    Expression of NR2A in mouse brain sections
    Immunohistochemical staining of perfusion-fixed frozen mouse brain sections using Anti-NMDAR2A (GluN2A) (extracellular)-ATTO Fluor-488 Antibody (#AGC-002-AG), (1:80). A. NR2A staining (green) in striatum is detected in neuronal profiles. B. NR2A staining in cingulate cortex is also detected in neuronal profiles. Cell nuclei are labeled with DAPI (blue).
Scientific background

The NMDA receptors are members of the glutamate receptor family of ion channels that also include the AMPA and Kainate receptors.

The NMDA receptors are encoded by seven genes: one NMDAR1 (or NR1) subunit, four NR2 (NR2A-NR2D) and two NR3 (NR3A-NR3B) subunits. The functional NMDA receptor appears to be a heterotetramer composed of two NMDAR1 and two NMDAR2 subunits. Whereas the NMDAR2 subunits that assemble with the NMDAR1 subunit can be either of the same kind (i.e. two NMDAR2A subunits) or different (one NMDAR2A with one NMDAR2B). NMDAR3 subunits can substitute the NMDAR2 subunits in their complex with the NMDAR1 subunit.

NMDAR is unique among ligand-gated ion channels in that it requires the simultaneous binding of two obligatory agonists: glycine and glutamate that bind to the NMDAR1 and NMDAR2 binding sites respectively. Another unique characteristic of the NMDA receptors is their dependence on membrane potential. At resting membrane potentials the channels are blocked by extracellular Mg2+. Neuronal depolarization relieves the Mg2+ blockage and allows ion influx into the cells. NMDA receptors are strongly selective for Ca2+ influx differing from the other glutamate receptor ion channels that are non-selective cation channels.

Ca2+ entry through the NMDAR regulates numerous downstream signaling pathways including long term potentiation (a molecular model of memory) and synaptic plasticity that may underlie learning. In addition, the NMDA receptors have been implicated in a variety of neurological disorders including epilepsy, ischemic brain damage, Parkinson’s and Alzheimer’s disease.

NMDA receptors expression and function are modulated by a variety of factors including receptor trafficking to the synapses and internalization as well as phosphorylation and interaction with other intracellular proteins.

Application key:

CBE- Cell-based ELISA, FC- Flow cytometry, ICC- Immunocytochemistry, IE- Indirect ELISA, IF- Immunofluorescence, IFC- Indirect flow cytometry, IHC- Immunohistochemistry, IP- Immunoprecipitation, LCI- Live cell imaging, N- Neutralization, WB- Western blot

Species reactivity key:

H- Human, M- Mouse, R- Rat
Lyophilized Powder
Image & Title:

Anti-NMDAR2A (GluN2A) (extracellular)-ATTO Fluor-488 AntibodyMultiplex staining of GluN2A and SynGAP in rat cingulate cortex.Immunohistochemical staining of immersion-fixed, free floating rat brain frozen sections using Anti-NMDAR2A (GluN2A) (extracellular)-ATTO Fluor-488 Antibody (#AGC-002-AG), (1:200) and Anti-SynGAP Antibody (#APZ-032), (1:200), followed by donkey-anti-rabbit-Cy3. A. GluN2A staining (green) appears in neuronal profiles (arrows). B. SynGAP staining (red) is detected mostly in apical dendrites (horizontal arrows) and in neuronal soma (vertical arrows). C. Merge of the two images demonstrates colocalization in some neurons (vertical arrows). Cell nuclei are stained with DAPI (blue).

For research purposes only, not for human use
Last Update: 03/01/2024

Specifications

Citations

Citations

Applications

Scientific Background

Specific Control Products

  • NMDAR2A/GluN2A (extracellular) Blocking Peptide (#BLP-GC002) is the original antigen used for immunization during Anti-NMDAR2A (GluN2A) (extracellular) Antibody (#AGC-002) generation. The blocking peptide binds and ‘blocks’ Anti-NMDAR2A/GluN2A (extracellular) primary antibody, this makes it a good negative reagent control to help confirm antibody specificity in western blot and immunohistochemistry applications. This control is also often called a pre-adsorption control.

    NMDAR2A/GluN2A (extracellular) Blocking Peptide (#BLP-GC002)
  • Isotype controls are primary antibodies that lack specificity to the target, but match the class and type of the primary antibody used in the application. Isotype controls are used as negative controls to help differentiate non-specific background signal from specific antibody signal.

    Our Rabbit IgG Isotype Control-ATTO Fluor-488 (#RIC-001-AG), was specifically developed to be used as a negative control in immunohistochemistry and surface staining flow cytometry applications, along our line of rabbit primary antibodies conjugated to the ATTO Fluor-488 fluorophore.

    Rabbit IgG Isotype Control-ATTO Fluor-488 (#RIC-001-AG)

Related Products

Antibodies

  1. Anti-DARPP32 Antibody (#ADR-006)
  2. Anti-GluR1 (GluA1) (extracellular) Antibody (#AGC-004)
  3. Anti-GluR3 (GluA3) (extracellular) Antibody (#AGC-010)
  4. Anti-mGluR1 (extracellular) Antibody (#AGC-006)
  5. Anti-mGluR3 (extracellular) Antibody (#AGC-012)
  6. Anti-NMDAR2B (GluN2B) (extracellular) Antibody (#AGC-003)
  7. Anti-NMDAR2B (GluN2B) (extracellular)-ATTO Fluor-594 Antibody (#AGC-003-AR)
  8. Anti-NMDAR2C (GRIN2C) (extracellular) Antibody (#AGC-018)
  9. Anti-NMDAR2D (GRIN2D) (extracellular) Antibody (#AGC-020)

Pharmacological tools

Blockers/Antagonists: small molecules
  1. MPX-004 (#M-280)
  2. CGP-37849 (#C-325)
  3. DL-AP7 (#D-200)
  4. Ro 8-4304 hydrochloride (#R-165)
  5. TCN 201 (#T-190)
Activators/Agonists: small molecules
  1. NMDA (#N-170)
  2. cis-ACBD (#A-281)
  3. trans-ACBD (#A-280)
  4. (RS)-(Tetrazol-5-yl)glycine (#T-205)

Explorer kits & Research packs

Explorer kits
  1. NMDA Receptor Antibody Explorer Kit (#AK-214)
  2. NMDA Receptor Antagonist Explorer Kit (#EK-350)

Resources

  • ATTO Fluorescent Dyes

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  • ATTO Fluorescent Dyes

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