Anti-KCNK9 antibody (STJ13101285)

SPECIFICATIONS
ClonalityPolyclonal
HostRabbit
ConjugationUnconjugated
IsotypeIgG
ImmunogenA synthetic peptide from mouse KCNK9 (TASK3) conjugated to blue carrier protein was used as the antigen.
STJ13101285-100
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General Information

Short DescriptionRabbit polyclonal anti-KCNK9 for use in IHC in Mouse samples. Datasheet included with dilution recommendations, and related reagents.
ApplicationsIHC
HostRabbit
ReactivityMouse
NoteSTRICTLY FOR FURTHER SCIENTIFIC RESEARCH USE ONLY (RUO). MUST NOT TO BE USED IN DIAGNOSTIC OR THERAPEUTIC APPLICATIONS.

Product Properties

ClonalityPolyclonal
IsotypeIgG
ConjugationUnconjugated
PurificationIgG purified
Dilution RangeIHC. A dilution of 1:300 to 1:2000 is recommended. The optimal dilution should be determined by the end user. Not yet tested in other applications.
FormulationLyophilised
Storage InstructionMaintain the lyophilised/reconstituted antibodies frozen at-20°C for long term storage and refrigerated at 2-8°C for a shorter term. When reconstituting, Glycerol (1:1) may be added for an additional stability. Avoid freeze and thaw cycles.

Target Information

Gene SymbolKcnk9
Gene ID223604
Uniprot IDKCNK9_MOUSE
ImmunogenA synthetic peptide from mouse KCNK9 (TASK3) conjugated to blue carrier protein was used as the antigen.
SpecificitySpecific for KCNK9.

Additional Info

Function K(+) channel that conducts voltage-dependent outward rectifying currents upon membrane depolarization. Voltage sensing is coupled to K(+) electrochemical gradient in an 'ion flux gating' mode where outward but not inward ion flow opens the gate. Changes ion selectivity and becomes permeable to Na(+) ions in response to extracellular acidification. Protonation of the pH sensor His-98 stabilizes C-type inactivation conformation likely converting the channel from outward K(+)-conducting, to inward Na(+)-conducting to nonconductive state. Homo- and heterodimerizes to form functional channels with distinct regulatory and gating properties. Allows K(+) currents with fast-gating kinetics important for the repolarization and hyperpolarization phases of action potentials. In granule neurons, hyperpolarizes the resting membrane potential to limit intrinsic neuronal excitability, but once the action potential threshold is reached, supports high-frequency action potential firing and increased neuronal excitability. Homomeric and/or heteromeric KCNK3:KCNK9 channels operate in cerebellar granule cells, whereas heteromeric KCNK1:KCNK9 enables currents in hippocampal dentate gyrus granule neurons. Dispensable for central chemosensory respiration i.e. breathing controlled by brainstem CO2/pH, it rather conducts pH-sensitive currents and controls the firing rate of serotonergic raphe neurons involved in potentiation of the respiratory chemoreflex. In retinal ganglion cells, mediates outward rectifying currents that regulate action potentials in response to acidification of the synaptic cleft. Involved in transmission of image-forming and nonimage-forming visual information in the retina. In adrenal gland, contributes to the maintenance of a hyperpolarized resting membrane potential of aldosterone-producing cells at zona glomerulosa and limits aldosterone release as part of a regulatory mechanism that controls arterial blood pressure and electrolyte homeostasis.
Protein Name Potassium Channel Subfamily K Member 9
Acid-Sensitive Potassium Channel Protein Task-3
Twik-Related Acid-Sensitive K(+ Channel 3
Database Links Reactome: R-MMU-1299316
Reactome: -MMU-5576886
Cellular Localisation Cell Membrane
Multi-Pass Membrane Protein
Mitochondrion Inner Membrane
Cell Projection
Dendrite
Colocalizes With Map2 In The Soma And Proximal Dendrites Of Dentate Gyrus Granule Cells
Alternative Antibody Names Anti-Potassium Channel Subfamily K Member 9 antibody
Anti-Acid-Sensitive Potassium Channel Protein Task-3 antibody
Anti-Twik-Related Acid-Sensitive K(+ Channel 3 antibody
Anti-Kcnk9 antibody
Anti-Task3 antibody

Information sourced from Uniprot.org

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