NMDAR2C Antibody Blocking Peptide(bs-0323P)-500ug

NMDAR2C Antibody Blocking Pept

ide(bs-0323P)-500ug
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  • ¥880
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  • bs-0323P
  • 2025年10月16日
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      500ug

    产品编号bs-0323P
    英文名称NMDAR2C Antibody Blocking Peptide
    中文名称谷氨酸受体2C封闭多肽(N端)
    英文别名NR2C; N-Methyl-d-Asprtate receptor 2C; Glutamate Receptor Ionotropic N Methyl D Aspartate 2C; GRIN2C; N Methly D Aspartate Receptor Channel Subunit Epsilon 3; N Methyl D Aspartate Receptor Subtype 2C; NR2C; NMDE3_HUMAN.
    性状Lyophilized
    纯化方法HPLC
    亚基Interacts with PDZ domains of INADL and DLG4 (By similarity). Forms heteromeric channel of a zeta subunit (GRIN1), a epsilon subunit (GRIN2A, GRIN2B, GRIN2C or GRIN2D) and a third subunit (GRIN3A or GRIN3B).
    亚细胞定位Cell membrane; Multi-pass membrane protein. Cell junction, synapse, postsynaptic cell membrane; Multi-pass membrane protein.
    组织特异性Mainly expressed in brain with predominant expression is in the cerebellum, also present in the hippocampus, amygdala, caudate nucleus, corpus callosum, subthalamic nuclei and thalamus. Detected in the heart, skeletal muscle and pancreas.
    相似性Belongs to the glutamate-gated ion channel (TC 1.A.10.1) family. NR2C/GRIN2C subfamily.
    功能NMDA receptor subtype of glutamate-gated ion channels with high calcium permeability and voltage-dependent sensitivity to magnesium. Mediated by glycine.
    保存条件Shipped at 4℃. Stored at -20℃ for one year. Avoid repeated freeze/thaw cycles.
    背景资料This gene encodes a subunit of the N-methyl-D-aspartate (NMDA) receptor, which is a subtype of ionotropic glutamate receptor. NMDA receptors are found in the central nervous system, are permeable to cations and have an important role in physiological processes such as learning, memory, and synaptic development. The receptor is a tetramer of different subunits (typically heterodimer of subunit 1 with one or more of subunits 2A-D), forming a channel that is permeable to calcium, potassium, and sodium, and whose properties are determined by subunit composition. Alterations in the subunit composition of the receptor are associated with pathophysiological conditions such as Parkinson's disease, Alzheimer's disease, depression, and schizophrenia. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Jun 2013]

     

     

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