Anti-phospho-NMDA 2b Receptor, (Tyr1472) (NMDA R2b, N-methyl-D-aspartate, GRIN2B, Glutamate receptor

Anti-phospho-NMDA 2b Receptor, (Tyr1472) (NMDA R2b, N-methyl-D-aspartate, GRIN2B, Glutamate receptor
Item number Size Datasheet Manual SDS Delivery time Quantity Price
N2905-41F.100 100 µg - -

3 - 19 business days*

659.00€
 
Ion channels are integral membrane proteins that help establish and control the small voltage... more
Product information "Anti-phospho-NMDA 2b Receptor, (Tyr1472) (NMDA R2b, N-methyl-D-aspartate, GRIN2B, Glutamate receptor"
Ion channels are integral membrane proteins that help establish and control the small voltage gradient across the plasma membrane of living cells by allowing the flow of ions down their electrochemical gradient (1). They are present in the membranes that surround all biological cells because their main function is to regulate the flow of ions across this membrane. Whereas some ion channels permit the passage of ions based on charge, others conduct based on a ionic species, such as sodium or potassium. Furthermore, in some ion channels, the passage is governed by a gate which is controlled by chemical or electrical signals, temperature, or mechanical forces. There are a few main classifications of gated ion channels. There are voltage- gated ion channels, ligand-gated, other gating systems and finally those that are classified differently, having more exotic characteristics. The first are voltage- gated ion channels which open and close in response to membrane potential. These are then separated into sodium, calcium, potassium, proton, transient receptor, and cyclic nucleotide-gated channels, each of which is responsible for a unique role. Ligand-gated ion channels are also known as ionotropic receptors, and they open in response to specific ligand molecules binding to the extracellular domain of the receptor protein. The other gated classifications include activation and inactivation by second messengers, inward-rectifier potassium channels, calcium-activated potassium , channels, two-pore-domain potassium channels, light-gated channels, mechano-sensitive ion channels and cyclic nucleotide-gated channels. Finally, the other classifications are based on less normal characteristics such as two-pore channels, and transient receptor potential channels (2). , NR2B containing receptors have been implicated in synaptic plasticity, memory formation and pain modulation (3). Studies suggest that the NR2B subunit of glutamate receptors may be potential targets for relieving pain, NR2B may be a probable target for anti-nociceptive drugs, and , may also be useful as analgesics (4). , , Applications:, Suitable for use in Western Blot, Immunoprecipitation and Immunohistochemistry. Other applications not tested. Recommended Dilution: Western Blot:1-10ug/ml, Immunohistochemistry:0.1-1ug/ml, Optimal dilutions to be determined by the researcher. Storage and Stability: May be stored at 4°C for short-term only. Aliquot to avoid repeated freezing and thawing. Store at -20°C. Aliquots are stable for at least 12 months. For maximum recovery of product, centrifuge the original vial after thawing and prior to removing the cap.
Keywords: Anti-NMDAR2B, Anti-N-methyl D-aspartate receptor subtype 2B, Anti-Glutamate [NMDA] receptor subunit epsilon-2
Supplier: United States Biological
Supplier-Nr: N2905-41F

Properties

Application: IHC, IP, WB
Antibody Type: Monoclonal
Clone: 10F756
Conjugate: No
Host: Mouse
Species reactivity: human, mouse, rat
Immunogen: Fusion protein aa 20-271 (extracellular N-terminus) of rat NR2B (also known as N-methyl D-aspartate/ NMDA receptor subtype 2B, accession number Q00960).
Format: Affinity Purified

Handling & Safety

Storage: -20°C
Shipping: +4°C (International: +4°C)
Caution
Our products are for laboratory research use only: Not for administration to humans!
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