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GluR-δ1 Antibody (2B7): sc-81878

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Datasheets
  • GluR-δ1 Antibody (2B7) is a mouse monoclonal IgG2b κ GluR-δ1 antibody provided at 100 µg/ml
  • raised against recombinant GluR-δ1 of human origin
  • recommended for detection of GluR-δ1 of mouse, rat and human origin by WB, IP and ELISA
  • At present, we have not yet completed the identification of the preferred secondary detection reagent(s) for GluR-δ1 Antibody (2B7). This work is in progress.

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    GluR-δ1 Antibody (2B7) is a mouse monoclonal IgG2b kappa light chain antibody that detects GluR-δ1 protein of mouse, rat, and human origin by western blotting (WB), immunoprecipitation (IP), and enzyme-linked immunosorbent assay (ELISA). Anti-GluR-δ1 antibody (2B7) is available as the non-conjugated format. GluR-δ1 protein, also known as GRID1, is a multi-pass membrane protein that plays a crucial role in the central nervous system by regulating synaptic transmissions. GluR-δ1 is primarily localized at the postsynaptic cell membrane and cell junctions, where GluR-δ1 functions as a glutamate receptor, contributing to fast excitatory neurotransmission essential for neural communication. GluR-δ1 is particularly important for synaptic plasticity, a fundamental mechanism underlying learning and memory. Additionally, GluR-δ1 is implicated in various neurological disorders; defects in GluR-δ1 gene have been associated with schizophrenia, highlighting GluR-δ1′s significance in maintaining normal brain function. GluR-δ1′s ability to interact with other proteins in the glutamate receptor family further underscores GluR-δ1′s role in modulating synaptic activity and potential as a therapeutic target in neuropsychiatric conditions.

    For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.

    Alexa Fluor® is a trademark of Molecular Probes Inc., OR., USA

    LI-COR® and Odyssey® are registered trademarks of LI-COR Biosciences

    GluR-δ1 Antibody (2B7) References:

    1. Postsynaptic density-93 interacts with the delta2 glutamate receptor subunit at parallel fiber synapses.  |  Roche, KW., et al. 1999. J Neurosci. 19: 3926-34. PMID: 10234023
    2. Prediction of the coding sequences of unidentified human genes. XV. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro.  |  Nagase, T., et al. 1999. DNA Res. 6: 337-45. PMID: 10574462
    3. Identification of rat EMAP, a delta-glutamate receptor binding protein.  |  Ly, CD., et al. 2002. Biochem Biophys Res Commun. 291: 85-90. PMID: 11829466
    4. A novel protein complex linking the delta 2 glutamate receptor and autophagy: implications for neurodegeneration in lurcher mice.  |  Yue, Z., et al. 2002. Neuron. 35: 921-33. PMID: 12372286
    5. Molecular cloning of a cDNA encoding a novel member of the mouse glutamate receptor channel family.  |  Yamazaki, M., et al. 1992. Biochem Biophys Res Commun. 183: 886-92. PMID: 1372507
    6. Bipolar I disorder and schizophrenia: a 440-single-nucleotide polymorphism screen of 64 candidate genes among Ashkenazi Jewish case-parent trios.  |  Fallin, MD., et al. 2005. Am J Hum Genet. 77: 918-36. PMID: 16380905
    7. A case-control association study between the GRID1 gene and schizophrenia in the Chinese Northern Han population.  |  Guo, SZ., et al. 2007. Schizophr Res. 93: 385-90. PMID: 17490860
    8. Mapping of the mouse glutamate receptor delta1 subunit (Grid1) to chromosome 14.  |  Treadaway, J. and Zuo, J. 1998. Genomics. 54: 359-60. PMID: 9828146

    Ordering Information

    Product NameCatalog #UNITPriceQtyFAVORITES

    GluR-δ1 Antibody (2B7)

    sc-81878
    100 µg/ml
    $333.00

    For Western Blot, is it recommended to use denatured or non-denatured conditions with GluR-δ1 (2B7): sc-81878 antibody?

    Asked by: Dr Ninau Qelp
    Thank you for your question. We recommend this antibody for use in denatured Western Blot conditions. It has not been validated for use in non-denatured conditions. Please contact our Technical Service Department for further details or inquiries.
    Answered by: Technical Support
    Date published: 2017-03-27
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