Our broad portfolio consists of multiplex panels that allow you to choose, within the panel, analytes that best meet your needs. On a separate tab you can choose the premixed cytokine format or a single plex kit.
Cell Signaling Kits & MAPmates™
Choose fixed kits that allow you to explore entire pathways or processes. Or design your own kits by choosing single plex MAPmates™, following the provided guidelines.
The following MAPmates™ should not be plexed together:
-MAPmates™ that require a different assay buffer
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-PanTyr and site-specific MAPmates™, e.g. Phospho-EGF Receptor and phospho-STAT1 (Tyr701)
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48-602MAG
Buffer Detection Kit for Magnetic Beads
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Space Saver Option Customers purchasing multiple kits may choose to save storage space by eliminating the kit packaging and receiving their multiplex assay components in plastic bags for more compact storage.
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MAB5782
Sigma-AldrichAnti-NMDAR2B Antibody, NT
Detect NMDAR2B using this Anti-NMDAR2B Antibody, N-terminal validated for use in WB.
More>>Detect NMDAR2B using this Anti-NMDAR2B Antibody, N-terminal validated for use in WB. Less<<
Anti-NMDAR2B Antibody, NT MSDS (material safety data sheet) or SDS, CoA and CoQ, dossiers, brochures and other available documents.
Detect NMDAR2B using this Anti-NMDAR2B Antibody, N-terminal validated for use in WB.
Key Applications
Western Blotting
Application Notes
Western blot: 1:100-1:1,000 on rat brain lysate.
Optimal working dilutions must be determined by end user.
Biological Information
Immunogen
Recombinant protein from rat NMDAR2B.
Clone
1A8.9B3
Host
Mouse
Specificity
NMDAR2B, N-terminal. By Western blot the antibody reacts with bands at ~170 kDa on rat brain lysate. Additional bands at ~116, 50 and 32 kDa may be seen depending on sample and antibody concentration used.
N-methyl-D-aspartate (NMDA) receptors are a class of ionotropic glutamate receptors. NMDA receptor channel has been shown to be involved in long-term potentiation, an activity-dependent increase in the efficiency of synaptic transmission thought to underlie certain kinds of memory and learning. NMDA receptor channels are heteromers composed of three different subunits: NR1 (GRIN1), NR2 (GRIN2A, GRIN2B, GRIN2C, or GRIN2D) and NR3 (GRIN3A or GRIN3B). The NR2 subunit acts as the agonist binding site for glutamate. This receptor is the predominant excitatory neurotransmitter receptor in the mammalian brain.
FUNCTION: SwissProt: Q13224 # NMDA receptor subtype of glutamate-gated ion channels with high calcium permeability and voltage-dependent sensitivity to magnesium. Mediated by glycine. SIZE: 1484 amino acids; 166367 Da SUBUNIT: Forms heteromeric channel of a zeta subunit (GRIN1), a epsilon subunit (GRIN2A, GRIN2B, GRIN2C or GRIN2D) and a third subunit (GRIN3A or GRIN3B). Found in a complex with GRIN1 and GRIN3B. Found in a complex with GRIN1, GRIN3A and PPP2CB. Interacts with PDZ domains of INADL and DLG4 (By similarity). SUBCELLULAR LOCATION: Membrane; Multi-pass membrane protein. TISSUE SPECIFICITY: Primarily found in the fronto-parieto-temporal cortex and hippocampus pyramidal cells, lower expression in the basal ganglia. SIMILARITY: SwissProt: Q13224 ## Belongs to the glutamate-gated ion channel (TC 1.A.10) family.
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Usage Statement
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.
Storage and Shipping Information
Storage Conditions
Maintain -20°C in undiluted aliquots for up to 6 months after date of receipt. Avoid repeated freeze/thaw cycles.
Regional, developmental and interspecies expression of the four NMDAR2 subunits, examined using monoclonal antibodies Laurie, D J, et al Brain Res Mol Brain Res, 51:23-32 (1997)
1997