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Product last modified at: 2025-01-21T20:15:10.797Z
1% for the Planet 标识
PDP - Template Name: Antibody Sampler Kit
PDP - Template ID: *******4a3ef3a

AMPA Receptor (GluA) Antibody Sampler Kit #8652

AMPA Receptor (GluA) Antibody Sampler Kit: Image 1
Western blot analysis of extracts from mouse brain, rat brain, and rat prefrontal cortex tissues using AMPA Receptor 1 (GluA1) (D4N9V) Rabbit mAb.

To Purchase # 8652

  • Product Includes
  • Related Products
Product IncludesQuantityApplicationsReactivityMW(kDa)Isotype
AMPA Receptor 1 (GluA1) (D4N9V) Rabbit mAb #1318520 µlWB, IP, IFM R100Rabbit IgG
AMPA Receptor 2 (GluA2) (E1L8U) Rabbit mAb #1360720 µlWB, IPH M R100Rabbit IgG
AMPA Receptor 3 (GluA 3) (D47E3) Rabbit mAb #467620 µlWB, IPH M R100Rabbit IgG
AMPA Receptor 4 (GluA 4) (D41A11) XP® Rabbit mAb #807020 µlWB, IP, IFH M R100Rabbit IgG
Phospho-AMPA Receptor 1 (GluA1) (Ser845) (D10G5) Rabbit mAb #808420 µlWB, IPH M R100Rabbit IgG
Phospho-AMPA Receptor 2 (GluA2) (Tyr869/Tyr873/Tyr876) Antibody #392120 µlWBR100Rabbit 
Anti-rabbit IgG, HRP-linked Antibody #7074100 µlWBRabGoat 

Product Information

Product Description

The AMPA Receptor (GluA) Antibody Sampler Kit provides an economical means of evaluating the four subunits of AMPARs. The kit contains enough primary and secondary antibodies to perform two western blot experiments with each antibody.

Background

AMPA- (α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid), kainate-, and NMDA- (N-methyl-D-aspartate) receptors are the three main families of ionotropic glutamate-gated ion channels. AMPA receptors (AMPARs) are comprised of four subunits (GluR 1-4), which assemble as homo- or hetero-tetramers to mediate the majority of fast excitatory transmissions in the central nervous system. AMPARs are implicated in synapse formation, stabilization, and plasticity (1). In contrast to GluR 2-containing AMPARs, AMPARs that lack GluR 2 are permeable to calcium (2). Post-transcriptional modifications (alternative splicing, nuclear RNA editing) and post-translational modifications (glycosylation, phosphorylation) result in a very large number of permutations, fine-tuning the kinetic properties of AMPARs. Research studies have implicated activity changes in AMPARs in a variety of diseases including Alzheimer’s, amyotrophic lateral sclerosis (ALS), stroke, and epilepsy (1).

Pathways

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For Research Use Only. Not For Use In Diagnostic Procedures.
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