
Thermo Fisher Scientific KV2.2 (KCNB2) Polyclonal Antibody
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Applications
Tested Dilution
Publications
Western Blot (WB)
1:2,000
Immunohistochemistry (IHC)
Assay-Dependent
Immunocytochemistry (ICC/IF)
Assay-Dependent
Immunoprecipitation (IP)
Assay-Dependent
Product Specifications
Host/Isotype
Rabbit / IgG
Class
Polyclonal
Type
Antibody
Immunogen
Peptide CRQDIYQAVGEVKKD, corresponding to amino acid residues 859-873 of rat Kv 2.2 if (typeof window.$mangular === undefined
|| !window.$mangular) { window.$mangular = {}; } $mangular.antigenJson = \[{
targetFamily:
KV2.2 (KCNB2),
uniProtId:
Q63099-1,
ncbiNodeId:
10114,
antigenRange:
859-873,
antigenLength:
907,
antigenImageFileName:
PA5-77634_KV2.2_KCNB2_Q63099-1_Rabbit.svg,
antigenImageFileNamePDP:
PA5-77634_KV2.2_KCNB2_Q63099-1_Rabbit_PDP.jpeg,
sortOrder:
1}\]
; $mangular.isB2BCMGT = false
; $mangular.isEpitopesModalImageMultiSizeEnabled = true
;
View immunogen .st0{fill:#FFFFFF;} .st1{fill:#1E8AE7;}
Conjugate
Unconjugated Unconjugated Unconjugated
Form
Lyophilized
Concentration
0.8 mg/mL
Storage conditions
-20°C
Shipping conditions
Wet ice
RRID
AB_2736065
Product Specific Information
Product is shipped at room temperature as a lyophilized powder and should be stored at -20 °C upon receipt. Reconstitution: add 50 µL of deionized water.
Target Information
Kcnb2 (Kv2.2) encodes a Voltage-gated K+ channel which are important determinants of neuronal membrane excitability. Moreover, differences in K+ channel expression patterns and densities contribute to the variation in action potential waveforms and repetitive firing patterns evident in different neuronal cell types. The delayed rectifier-type (IK) channels (Kv1.5, Kv2.1, and Kv2.2) are expressed on all neuronal somata and proximal dendrites and are also found in a wide variety on non-neuronal cell types including pancreatic islet, alveolar cells and cardiac myocytes. Kv2.1 and Kcnb2 form distinct populations of K+ channels and these subunits are thought to be primarily responsible for IK in superior cervical ganglion cells. Functionally, Kcnb2 mediates the voltage-dependent potassium ion permeability of excitable membranes. Channels open or close in response to the voltage difference across the membrane, letting potassium ions pass in accordance with their electrochemical gradient. Diseases associated with KCNB2 include Brugada Syndrome.
For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.
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