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MABN71

Sigma-Aldrich

Anti-GluR2 Antibody, clone L21/32

clone L21/32, from mouse

Synonyme(s) :

glutamate receptor, ionotropic, AMPA 2, glutamate receptor 2, Glutamate receptor ionotropic, AMPA 2, AMPA-selective glutamate receptor 2

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About This Item

Code UNSPSC :
12352203
eCl@ss :
32160702
Nomenclature NACRES :
NA.41

Source biologique

mouse

Niveau de qualité

Forme d'anticorps

purified antibody

Type de produit anticorps

primary antibodies

Clone

L21/32, monoclonal

Espèces réactives

rat

Réactivité de l'espèce (prédite par homologie)

mouse (based on 100% sequence homology), human (immunogen homology)

Technique(s)

immunohistochemistry: suitable
western blot: suitable

Isotype

IgG1κ

Numéro d'accès NCBI

Numéro d'accès UniProt

Conditions d'expédition

wet ice

Modification post-traductionnelle de la cible

unmodified

Informations sur le gène

human ... GRIA2(2891)

Description générale

Glutamate receptors (GluRs) can be categorized as ionotropic or metabotropic and subcatergorized by their agonist preferences (NMDA, AMPA or Kainic acid). There are four types of AMPA selective GluR subunits (GluR1, GluR2, GluR3 and GluR4). Tetrameric or pentameric combinations of different subunits contributes to the functional diversity of AMPA receptors. In general, AMPA receptors mediate fast synaptic current at most excitatory synapses, with stoichiometry characterized by subtype composition. Although subunit composition of AMPA receptors varies, they must contain at least one edited GluR2 subunit to be calcium impermeable. The critical residue controlling calcium permeability is in the pore loop region. In GluR1, GluR3, and GluR4, this position is occupied by a Gln residue. In GluR2, it is occupied by an Arg residue. It has been shown experimentally that the presence of Arg in this position blocks Ca2+ ion permeability, while a Gln does not. Relative calcium permeability in AMPA receptor channels may be significant in pathological neurotoxic damage and long term changes in nervous system responses.

Immunogène

Recombinant protein corresponding to human GluR2.

Application

Detect GluR2 using this Anti-GluR2 Antibody, clone L21/32 validated for use in WB, IH.
Immunohistochemistry Analysis: 1:300 dilution of this antibody from a previous lot detected GluR2 in rat cerebellum and hippocampus tissue.
Research Category
Neuroscience

Neuroscience
Research Sub Category
Neurodegenerative Diseases

Neurotransmitters & Receptors

Qualité

Evaluated by Western Blot in rat brain membrane tissue lysate.

Western Blot Analysis: 0.5 µg/mL of this antibody detected GluR2 on 10 µg of rat brain membrane tissue lysate.

Description de la cible

~ 96 kDa observed

Forme physique

Format: Purified
Protein G
Purified mouse monoclonal IgG1κ in buffer containing 0.1 M Tris-Glycine (pH 7.4), 150 mM NaCl with 0.05% sodium azide.

Stockage et stabilité

Stable for 1 year at 2-8°C from date of receipt.

Remarque sur l'analyse

Control
Rat brain membrane tissue lysate

Autres remarques

Concentration: Please refer to the Certificate of Analysis for the lot-specific concentration.

Clause de non-responsabilité

Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.

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Code de la classe de stockage

12 - Non Combustible Liquids

Classe de danger pour l'eau (WGK)

WGK 1

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable


Certificats d'analyse (COA)

Recherchez un Certificats d'analyse (COA) en saisissant le numéro de lot du produit. Les numéros de lot figurent sur l'étiquette du produit après les mots "Lot" ou "Batch".

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Retrouvez la documentation relative aux produits que vous avez récemment achetés dans la Bibliothèque de documents.

Consulter la Bibliothèque de documents

Venkat Swaroop Achuta et al.
Science signaling, 11(513) (2018-01-18)
Altered neuronal network formation and function involving dysregulated excitatory and inhibitory circuits are associated with fragile X syndrome (FXS). We examined functional maturation of the excitatory transmission system in FXS by investigating the response of FXS patient-derived neural progenitor cells
Maria Arvaniti et al.
Journal of neurochemistry, 138(6), 806-820 (2016-06-28)
Nicotinic acetylcholine receptors (nAChRs) affect multiple physiological functions in the brain and their functions are modulated by regulatory proteins of the Lynx family. Here, we report for the first time a direct interaction of the Lynx protein LY6/PLAUR domain-containing 6
Identification of a Glutamatergic Claustrum-Anterior Cingulate Cortex Circuit for Visceral Pain Processing.
Xu, et al.
The Journal of Neuroscience, 42, 8154-8168 (2023)
Joseph A McQuail et al.
Neuropharmacology, 197, 108720-108720 (2021-07-18)
Ionotropic glutamate receptors of the NMDA and AMPA subtypes transduce excitatory signaling on neurons in the prefrontal cortex (PFC) in support of cognitive flexibility. Cognitive flexibility is reliably observed to decline at advanced ages, coinciding with changes in PFC glutamate
Xiang-Dong Sun et al.
Nature neuroscience, 19(8), 1010-1018 (2016-06-14)
Neurotransmission requires precise control of neurotransmitter release from axon terminals. This process is regulated by glial cells; however, the underlying mechanisms are not fully understood. We found that glutamate release in the brain was impaired in mice lacking low-density lipoprotein

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