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GRIN2A elisa kit :: Camel Glutamate Receptor, Ionotropic, N-Methyl-D-Aspartate 2A ELISA Kit

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Catalog # MBS072882
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GRIN2A elisa kit
Product Name

Glutamate Receptor, Ionotropic, N-Methyl-D-Aspartate 2A (GRIN2A), ELISA Kit

Full Product Name

Camel Glutamate Receptor, Ionotropic, N-Methyl-D-Aspartate 2A ELISA Kit

Product Gene Name
Research Use Only
For Research Use Only. Not for use in diagnostic procedures.
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3D Structure
ModBase 3D Structure for Q12879
Species Reactivity
Preparation and Storage
Store all reagents at 2-8 degree C
Product Note
Our ELISA Kit assays are dynamic research tools and sometimes they may be updated and improved. If the format of this assay is important to you then please request the current manual or contact our technical support team with a presales inquiry before placing an order. We will confirm the current details of the assay. We cannot guarantee the sample manual posted online is the most current manual.
Other Notes
Small volumes of GRIN2A elisa kit vial(s) may occasionally become entrapped in the seal of the product vial during shipment and storage. If necessary, briefly centrifuge the vial on a tabletop centrifuge to dislodge any liquid in the container`s cap. Certain products may require to ship with dry ice and additional dry ice fee may apply.
Searchable Terms for GRIN2Apurchase
MBS072882 is a ready-to-use microwell, strip-or-full plate ELISA (enzyme-linked immunosorbent assay) Kit for analyzing the presence of the Glutamate Receptor, Ionotropic, N-Methyl-D-Aspartate 2A (GRIN2A) ELISA Kit target analytes in biological samples. The concentration gradients of the kit standards or positive controls render a theoretical kit detection range in biological research samples containing GRIN2A. The ELISA analytical biochemical technique of the MBS072882 kit is based on GRIN2A antibody-GRIN2A antigen interactions (immunosorbency) and an HRP colorimetric detection system to detect GRIN2A antigen targets in samples. The ELISA Kit is designed to detect native, not recombinant, GRIN2A. Appropriate sample types may include undiluted body fluids and/or tissue homogenates, secretions. Quality control assays assessing reproducibility identified the intra-assay CV (%) and inter-assay CV(%).
NCBI/Uniprot data below describe general gene information for GRIN2A. It may not necessarily be applicable to this product.
NCBI Accession #
NCBI GenBank Nucleotide #
UniProt Primary Accession #
UniProt Secondary Accession #
UniProt Related Accession #
Molecular Weight
165,283 Da
NCBI Official Full Name
glutamate receptor ionotropic, NMDA 2A isoform 1
NCBI Official Synonym Full Names
glutamate receptor, ionotropic, N-methyl D-aspartate 2A
NCBI Official Symbol
GRIN2A  [Similar Products]
NCBI Official Synonym Symbols
  [Similar Products]
NCBI Protein Information
glutamate receptor ionotropic, NMDA 2A; N-methyl D-aspartate receptor subtype 2A; N-methyl-D-aspartate receptor subunit 2A; N-methyl-D-aspartate receptor channel, subunit epsilon-1
UniProt Protein Name
Glutamate receptor ionotropic, NMDA 2A
UniProt Synonym Protein Names
Glutamate [NMDA] receptor subunit epsilon-1; N-methyl D-aspartate receptor subtype 2A
UniProt Gene Name
GRIN2A  [Similar Products]
UniProt Synonym Gene Names
NMDAR2A; GluN2A; NMDAR2A; NR2A; hNR2A  [Similar Products]
UniProt Entry Name
NCBI Summary for GRIN2A
This gene encodes a member of the glutamate-gated ion channel protein family. The encoded protein is an N-methyl-D-aspartate (NMDA) receptor subunit. NMDA receptors are both ligand-gated and voltage-dependent, and are involved in long-term potentiation, an activity-dependent increase in the efficiency of synaptic transmission thought to underlie certain kinds of memory and learning. These receptors are permeable to calcium ions, and activation results in a calcium influx into post-synaptic cells, which results in the activation of several signaling cascades. Disruption of this gene is associated with focal epilepsy and speech disorder with or without mental retardation. Alternative splicing results in multiple transcript variants. [provided by RefSeq, May 2014]
UniProt Comments for GRIN2A
NMDAR2A: a subunit of N-methyl-D-aspartate (NMDA) receptors, members of the glutamate receptor channel superfamily. Possesses high calcium permeability and voltage-dependent sensitivity to magnesium and is modulated by glycine. Plays a key role in synaptic plasticity, synaptogenesis, excitotoxicity, memory acquisition and learning. Mediates neuronal functions in glutamate neurotransmission.

Protein type: Membrane protein, integral; Channel, ligand-gated; Membrane protein, multi-pass

Chromosomal Location of Human Ortholog: 16p13.2

Cellular Component: presynaptic membrane; postsynaptic membrane; synaptic vesicle; cell surface; integral to plasma membrane; endoplasmic reticulum; dendrite; plasma membrane; cell junction; N-methyl-D-aspartate selective glutamate receptor complex

Molecular Function: protein binding; extracellular-glutamate-gated ion channel activity; zinc ion binding; calcium channel activity; N-methyl-D-aspartate selective glutamate receptor activity

Biological Process: startle response; positive regulation of apoptosis; regulation of synaptic plasticity; sensory perception of pain; dopamine metabolic process; synaptic transmission; protein localization; learning and/or memory; transport; response to wounding; visual learning; serotonin metabolic process; response to drug; synaptic transmission, glutamatergic; glutamate signaling pathway; response to amphetamine; sleep; memory; response to ethanol; neurogenesis; directional locomotion; ionotropic glutamate receptor signaling pathway; regulation of sensory perception of pain; regulation of excitatory postsynaptic membrane potential; negative regulation of protein catabolic process

Disease: Epilepsy, Focal, With Speech Disorder And With Or Without Mental Retardation
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While every efforts were made to ensure the accuracy of the information provided in this datasheet, MyBioSource will not be liable for any omissions or errors contained herein. MyBioSource reserves the right to make changes to this datasheet at any time without prior notice.

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