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GRIN1/NMDAR1 Antikörper (Extracellular)

Der Meerschweinchen Polyklonal Anti-GRIN1/NMDAR1-Antikörper wurde für WB, IHC und IF validiert. Er ist geeignet, GRIN1/NMDAR1 in Proben von Ratte zu detektieren.
Produktnummer ABIN7043243

Kurzübersicht für GRIN1/NMDAR1 Antikörper (Extracellular) (ABIN7043243)

Target

Alle GRIN1/NMDAR1 (GRIN1) Antikörper anzeigen
GRIN1/NMDAR1 (GRIN1) (Glutamate Receptor, Ionotropic, N-Methyl D-Aspartate 1 (GRIN1))

Reaktivität

  • 152
  • 144
  • 114
  • 8
  • 4
  • 3
  • 3
  • 3
  • 2
  • 1
  • 1
  • 1
  • 1
Ratte

Wirt

  • 158
  • 41
  • 1
Meerschweinchen

Klonalität

  • 148
  • 52
Polyklonal

Konjugat

  • 104
  • 10
  • 7
  • 6
  • 4
  • 4
  • 4
  • 4
  • 4
  • 4
  • 3
  • 3
  • 3
  • 3
  • 3
  • 3
  • 3
  • 3
  • 3
  • 3
  • 3
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
Dieser GRIN1/NMDAR1 Antikörper ist unkonjugiert

Applikation

  • 149
  • 70
  • 47
  • 41
  • 40
  • 26
  • 23
  • 22
  • 17
  • 15
  • 10
  • 4
  • 4
  • 3
  • 1
  • 1
  • 1
  • 1
Western Blotting (WB), Immunohistochemistry (IHC), Immunofluorescence (IF)
  • Bindungsspezifität

    • 37
    • 27
    • 21
    • 17
    • 15
    • 7
    • 5
    • 5
    • 5
    • 3
    • 3
    • 3
    • 2
    • 2
    • 2
    • 2
    • 2
    • 2
    • 2
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    Extracellular

    Verwendungszweck

    A Guinea Pig Polyclonal Antibody to NMDA Receptor 1 (GluN1)

    Spezifität

    Extracellular, N-terminus

    Kreuzreaktivität

    Human, Maus, Ratte

    Homologie

    Human,mouse - identical

    Produktmerkmale

    Guinea pig Anti-NMDAR1 (GluN1) (extracellular) Antibody is directed against an extracellular epitope of rat NMDA Receptor 1. Guinea pig Anti-NMDAR1 (GluN1) (extracellular) Antibody  raised in guinea pig can be used in western blot and immunohistochemistry applications. The antibody recognizes an extracellular epitope and is thus ideal for detecting NMDAR1 in living cells. It has been designed to recognize NMDAR1 from rat, mouse and human samples. The antigen used to immunize guinea pigs is the same as Anti-NMDAR1 (GluN1) (extracellular) Antibody (ABIN7043242, ABIN7044322 and ABIN7044323) raised in rabbit. Our line of guinea pig antibodies enables more flexibility with our products such as multiplex staining studies, immunoprecipitation, etc.

    Aufreinigung

    Affinity purified on immobilized antigen.

    Immunogen

    Immunogen: Synthetic peptide

    Immunogen Sequence: ETEKPRGYQMSTRLK(C), corresponding to amino acid residues 385-399 of rat GluN1

    Isotyp

    IgG
  • Applikationshinweise

    Antigen preadsorption control: 1 μg peptide per 1 μg antibody

    Application Dilutions Immunohistochemistry paraffin embedded sections ihc: 1:600-1:1200

    Application Dilutions Western blot wb: 1:200

    Kommentare

    Negative Control: (ABIN7235673)

    Blocking Peptide: (ABIN7235673)

    Beschränkungen

    Nur für Forschungszwecke einsetzbar
  • Format

    Lyophilized

    Rekonstitution

    Recosntitute with double distilled water (DDW) to a concentration of 1.0 mg/mL.

    Konzentration

    1 mg/mL

    Buffer

    PBS pH 7.4

    Lagerung

    4 °C,-20 °C

    Informationen zur Lagerung

    Storage before reconstitution: The antibody ships as a lyophilized powder at room temperature. Upon arrival, it should be stored at -20°C.

    Storage after reconstitution: The reconstituted solution can be stored at 4°C 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 x g 5 min).

  • Target

    GRIN1/NMDAR1 (GRIN1) (Glutamate Receptor, Ionotropic, N-Methyl D-Aspartate 1 (GRIN1))

    Andere Bezeichnung

    GRIN1

    Hintergrund

    NMDA receptor 1, Ionotropic glutamate receptor subunit ζ 1, N-methyl-D-aspartate receptor subunit 1, GRIN1,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.The 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.

    Alternative names: NMDAR1 (GluN1), NMDA receptor 1, Ionotropic glutamate receptor subunit zeta1, N-methyl-D-aspartate receptor subunit 1, GRIN1, GLUN1

    Gen-ID

    24408

    NCBI Accession

    NM_007327

    UniProt

    P35439

    Pathways

    Synaptic Membrane, Feeding Behaviour, Regulation of long-term Neuronal Synaptic Plasticity
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