GRIN1/NMDAR1 Antikörper (pSer890)
Kurzübersicht für GRIN1/NMDAR1 Antikörper (pSer890) (ABIN5540837)
Target
Alle GRIN1/NMDAR1 (GRIN1) Antikörper anzeigenReaktivität
Wirt
Klonalität
Konjugat
Applikation
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Bindungsspezifität
 - pSer890
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Spezifität
 - The antibody detects endogenous level of NMDAR1 only when phosphorylated at serine 890.
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Aufreinigung
 - Affinity chromatography using epitope-specific peptide
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Immunogen
 - Peptide sequence around phosphorylation site of serine890(A-S-S(p)-F-K) derived from Human NMDAR1 (KLH-conjugated)
 
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Applikationshinweise
 - Western blot: 1:500~1:1000.
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Beschränkungen
 - Nur für Forschungszwecke einsetzbar
 
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Format
 - Liquid
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Buffer
 - Rabbit IgG in phosphate buffered saline (without Mg2+ and Ca2+), pH 7.4, 150 mM NaCl, 0.02 % sodium azide and 50 % glycerol
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Konservierungsmittel
 - Sodium azide
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Vorsichtsmaßnahmen
 - This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
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Lagerung
 - -20 °C
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Informationen zur Lagerung
 - Upon receipt, store undiluted (in aliquots) at -20°C. Avoid repeated freezing and thawing. Shelf life: one year from despatch.
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Haltbarkeit
 - 12 months
 
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- GRIN1/NMDAR1 (GRIN1) (Glutamate Receptor, Ionotropic, N-Methyl D-Aspartate 1 (GRIN1))
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Andere Bezeichnung
 - nmda receptor 1
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Hintergrund
 - NMDA receptors are members of the ionotropic class of glutamate receptors, which also includes Kainate and AMPA receptors. NMDA receptors consist of NR1 subunits combined with one or more NR2 (A-D) or NR3 (A-B) subunits. The ligand-gated channel is permeable to cations including Ca2+, and at resting membrane potentials NMDA receptors are inactive due to a voltage-dependent blockade of the channel pore by Mg2+. NMDA receptor activation, which requires binding of glutamate and glycine, leads to an influx of Ca2+ into the postsynaptic region where it activates several signaling cascades, including pathways leading to the induction of long-term potentiation (LTP) and depression (LTD). NMDA receptors have a critical role in excitatory synaptic transmission and plasticity in the CNS. They govern a range of physiological conditions including neurological disorders caused by excitotoxic neuronal injury, psychiatric disorders and neuropathic pain syndromes.
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UniProt
 - Q05586
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Pathways
 - Synaptic Membrane, Feeding Behaviour, Regulation of long-term Neuronal Synaptic Plasticity
 
Target
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