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Antigenic Specificity | KCC2 |
Clone | [S1-12] |
Host Species | Mouse |
Reactive Species | human, mouse, rat |
Isotype | IgG2a |
Format | ATTO 633 conjugate |
Size | 0.1 mg |
Concentration | 1mg/mL |
Applications | Immunohistochemistry (IHC), Western Blot (WB), Immunoprecipitation (IP) |
Reviews / Ratings | If you have used this antibody, please help fellow researchers by submitting reviews to pAbmAbs and antYbuddY. |
Description | Background Info: Detects ~140kDa Scientific Background: KCC2 is a member of the cation-chloride cotransporter gene family (1). It acts as a K-Cl cotransporter. KCCs normally lower intracellular chloride concentrations below the electrochemical equilibrium potential and depending on the chemical concentration gradients of potassium and chloride, KCC2 can operate as a net efflux or influx pathway. It is proposed to act as the main chloride extruder to promote fast hyperpolarizing postsynaptic inhibition in the brain (2, 3). KCC2 is expressed at high levels in neurons throughout the nervous system and immunofluorescence shows that the protein is localized at inhibitory synapses of the spinal cord (4). Studies in mice have shown that KCC2 reduc |
Immunogen | n/a |
Other Names | [Potassium Chloride Cotransporter; Potassium chloride transporter 5; SLC12A5; hKCC2; S12A5; Solute carrier family 12 member 5; Electroneutral potassium-chloride cotransporter 2; Furosemide-sensitive K-Cl cotransporter; K-Cl cotransporter 2; rKCC2], [Slc12a5; Slc12a5; Kcc2; Kcc2; rKCC2] |
Gene, Accession # | Gene ID: 171373, NCBI: NP_599190, UniProt: Q63633 |
Catalog # | MBS800047 |
Price | $440 |
Order / More Info | KCC2 Antibody from MYBIOSOURCE INC. |
Product Specific References | 1. Lee L.H., Walker J.A., Williams J.R., Goodier R.J., Payne J.A., Moss S.J. (2007) J Biol Chem. 282(41): 29777-29784. 2. Watanabe M., Wake H., Moorhouse A.J., Nabekura J. (2009) J Biol Chem. 284(41): 27980-27988. 3. Gulyas A.I., Sik A., Payne J.A., Kaila K., Freund T.F. (2001) Eur J Neurosci. 13(12): 2205-2217. 4. Vinay L., Jean-Xavier C. (2008) Brain Res Rev. 57(1): 103-110. |