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Anti-GluA4/Ionotropic Glutamate receptor 4, ALEXA Fluor 594

Anti-GluA4/Ionotropic Glutamate receptor 4, ALEXA Fluor 594 size: 100 microliters 489

Price 489
Size 100 microliters
TypeConjugated Primary Antibody
Conjugated with 594, ALEXA FLUOR®
Host organismRabbit (Oryctolagus cuniculus)
Target Protein/PeptideGluA4/Ionotropic Glutamate receptor 4
SpecificityThis antibody reacts specifically with GluA4/Ionotropic Glutamate receptor 4
ModificationNo modification has been applied to this antibody
Modification siteNone
ClonalityPolyclonal Antibody
ClonePolyclonal Antibodies
Concentration1ug per 1ul
Subcellular locationsN/A
Antigen SourceKLH conjugated synthetic peptide derived from human GluA4/Ionotropic Glutamate receptor 4
Gene IDN/A
Swiss ProtN/A
ApplicationsIF(IHC-P)
Applications with corresponding dilutionsIF(IHC-P)(1:50-200)
Cross reactive species Mouse (Mus musculus), Rat (Rattus norvegicus), Human (Homo sapiens)
Cross Reactive Species details However, note that due to limited knowledge it is impossible to predict with 100% guarantee that the antibody does not corss react with any other species, No significant cross reactivity has been observed for this antibody for the tested species
Background information 2, 3, 4 and one zeta subunit, Ionotropic glutamate receptors are categorized into NMDA receptors and kainate/AMPA receptors, Kainate/AMPA receptors are co-localized with NMDA receptors in many synapses and consist of seven structurally related subunits designated GluR-1 to -7, The NMDA receptors consist of five subunits: epsilion 1, The kainate/AMPA receptors are primarily responsible for the fast excitatory neuro-transmission by glutamate, The zeta subunit is expressed throughout the brainstem, both of which contain glutamate-gated, cation-specific ion channels, neural development and neurodegeneration, whereas the NMDA receptors are functionally characterized by a slow kinetic and a high permeability for Ca2+ ions, whereas the four epsilon subunits display limited distribution, Glutamate receptors mediate most excitatory neurotransmission in the brain and play an important role in neural plasticity
Purification methodPurified by Protein A
Storage 50% glycerol and 0, Store at 4°, 09% sodium azide, C for 12 months, Water buffered solution containing 100ug/ml BSA
Excitation emission590nm/617nm
Synonyms AMPA selective glutamate receptor 4, AMPA-selective glutamate receptor 4, AMPA4, GLUR4, GLUR4C, GLURD, GRIA 4, GRIA4, GRIA4_HUMAN, GluA 4, GluA4, GluR 4, GluR D, GluR-4, GluR-D, Glutamate receptor 4, Glutamate receptor ionotrophic AMPA 4, Glutamate receptor ionotropic, AMPA 4
Also known asGluA4/Ionotropic Glutamate receptor 4 Antibody
Other nameAnti-GluA4/Ionotropic Glutamate receptor 4
Advisory For antibodies that are in liquid form or reconstituted lyophilized antibodies small amounts could become entrapped on the seal or the walls of the tube, Prior to use briefly centrifuge the vial to gather all the solution on the bottom, specificity and sensitivity, thus reducing its reactivity, Avoid freeze/thaw cycles as they may denaturate the polypeptide chains of the antibody
PropertiesFor facs or microscopy Alexa 1 conjugate
ConjugationAlexa Fluor
Description 2 or 3 and , However, In this sense, When such chemical-signals couple or bind to a receptor, a change in the electrical-activity of a cell, acetylcholine, am olfactory receptor is a protein-molecule that recognizes and responds to , an acetylcholine-receptor recognizes and responds to its endogenous-ligand, chemokinesor cytokines e, e, sometimes in pharmacology, such as enzymes, the term is also used to include other proteins that are drug-targets, they cause some form of cellular/tissue-response, transporters and ion-channels, The receptors are ligand binding factors of type 1, endogenous-chemical signals, g, g, protein-molecules , that receive chemical-signals from outside a cell
Gene targetGluA4/Ionotropic Glutamate receptor 4
Short name Fluor 594, Anti-GluA4/Ionotropic Glutamate receptor 4
LabelALEXA
Alternative name ALEXA Fluor 594, antibody to-GluA4/Ionotropic Glutamate receptor 4

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