Ntrk2 Mouse shRNA Plasmid (Locus ID 18212)

SKU
TF510739
Ntrk2 - Mouse, 4 unique 29mer shRNA constructs in retroviral RFP vector, 5µg of each construct provided
  $883.00
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Specifications
Specifications
Product Data
Locus ID 18212
Synonyms GP145-TrkB/GP95-TrkB; Tkrb; trk-B; trkB
Vector pRFP-C-RS
E. coli Selection Chloramphenicol (34 ug/ml)
Format Retroviral plasmids
Components Ntrk2 - Mouse, 4 unique 29mer shRNA constructs in retroviral RFP vector(Gene ID = 18212). 5µg purified plasmid DNA per construct
29-mer scrambled shRNA cassette in pRFP-C-RS Vector, TR30015, included for free.
RefSeq BC052014, NM_001025074, NM_001282961, NM_008745, NM_001025074.1, NM_001025074.2, NM_008745.1, NM_008745.2, NM_008745.3, NM_001282961.1
UniProt ID P15209
Summary Receptor tyrosine kinase involved in the development and the maturation of the central and the peripheral nervous systems through regulation of neuron survival, proliferation, migration, differentiation, and synapse formation and plasticity. Receptor for BDNF/brain-derived neurotrophic factor and NTF4/neurotrophin-4. Alternatively can also bind NTF3/neurotrophin-3 which is less efficient in activating the receptor but regulates neuron survival through NTRK2. Upon ligand-binding, undergoes homodimerization, autophosphorylation and activation. Recruits, phosphorylates and/or activates several downstream effectors including SHC1, FRS2, SH2B1, SH2B2 and PLCG1 that regulate distinct overlapping signaling cascades. Through SHC1, FRS2, SH2B1, SH2B2 activates the GRB2-Ras-MAPK cascade that regulates for instance neuronal differentiation including neurite outgrowth. Through the same effectors controls the Ras-PI3 kinase-AKT1 signaling cascade that mainly regulates growth and survival. Through PLCG1 and the downstream protein kinase C-regulated pathways controls synaptic plasticity. Thereby, plays a role in learning and memory by regulating both short term synaptic function and long-term potentiation. PLCG1 also leads to NF-Kappa-B activation and the transcription of genes involved in cell survival. Hence, it is able to suppress anoikis, the apoptosis resulting from loss of cell-matrix interactions. Isoform GP95-TRKB may also play a role in neutrophin-dependent calcium signaling in glial cells and mediate communication between neurons and glia.UniProtKB/Swiss-Prot Function
shRNA Design These shRNA constructs were designed against multiple splice variants at this gene locus. To be certain that your variant of interest is targeted, please contact techsupport@origene.com. If you need a special design or shRNA sequence, please utilize our custom shRNA service.
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