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QuickView for KCNK3 (gene)


Gene Symbol:
KCNK3 Homo sapiens Homo sapiens
Full name:
potassium two pore domain channel subfamily K member 3
Synonyms:
K2p3.1, OAT1, PPH4, TASK, TASK-1, TBAK1, potassium channel subfamily K member 3, TWIK-related acid-sensitive K(+) channel 1, TWIK-related acid-sensitive K+ channel, acid-sensitive potassium channel protein TASK, acid-sensitive potassium channel protein TASK-1, cardiac potassium channel, potassium channel, two pore domain subfamily K, member 3, potassium inwardly-rectifying channel, subfamily K, member 3, two P domain potassium channel, two pore K(+) channel KT3.1, two pore potassium channel KT3.1
Genomic Location:
Chr 2: 26769123-26806222
Description:
This gene encodes a member of the superfamily of potassium channel proteins that contain two pore-forming P domains. The encoded protein is an outwardly rectifying channel that is sensitive to changes in extracellular pH and is inhibited by extracellular acidification. Also referred to as an acid-sensitive potassium channel, it is activated by the ...
Orthologs:
Mus musculus Rattus norvegicus D. melanogaster C. elegans Macaca mulatta Canis lupus familiaris Bos taurus Danio rerio Pan troglodytes
External Links:
Entrez Gene
Transcription Factor
Binding Sites:
miRNA binding sites
(Source: TargetScan):
Cytogenetic Map:
chr 2
2p23.3


Transcripts Names
NM_002246
XM_005264293
Protein Names
O14649
Q53SU2



GO Molecular Function

voltage-gated ion channel activity | S100 protein binding | passive transmembrane transporter activity | potassium ion leak channel activity | transmembrane transporter activity | ion gated channel activity | signaling receptor binding | open rectifier potassium channel activity | molecular function regulator | leak channel activity | cation transmembrane transporter activity | transporter activity | ion transmembrane transporter activity | voltage-gated potassium channel activity | protein binding | potassium channel activity | receptor regulator activity | metal ion transmembrane transporter activity | voltage-gated cation channel activity | growth factor activity | potassium ion transmembrane transporter activity | receptor ligand activity | cation channel activity | inorganic cation transmembrane transporter activity | monovalent inorganic cation transmembrane transporter activity | voltage-gated channel activity | channel activity | ion channel activity | protein C-terminus binding | substrate-specific channel activity

GO Biological Process

brain development | cellular response to decreased oxygen levels | cellular response to zinc ion | establishment of localization | response to metal ion | nervous system development | response to drug | cellular chemical homeostasis | voltage-gated ion channel activity | cellular process | localization | cellular homeostasis | passive transmembrane transporter activity | metal ion transport | chemical synaptic transmission | response to hypoxia | response to inorganic substance | potassium ion leak channel activity | regulation of cellular process | regulation of cytosolic calcium ion concentration | transmembrane transporter activity | calcium ion homeostasis | cellular response to metal ion | head development | response to stimulus | ion gated channel activity | cellular response to hypoxia | response to stress | regulation of blood circulation | open rectifier potassium channel activity | cellular response to inorganic substance | cell-cell signaling | molecular function regulator | metal ion homeostasis | system development | response to oxygen levels | regulation of signal transduction | multicellular organism development | ion transmembrane transport | leak channel activity | cellular response to stress | synaptic signaling | cation transmembrane transporter activity | cellular ion homeostasis | monovalent inorganic cation transport | cellular response to oxygen levels | cellular potassium ion transport | ion transmembrane transporter activity | potassium ion transport | regulation of heart contraction | cation homeostasis | sensory organ development | cellular cation homeostasis | cell communication | voltage-gated potassium channel activity | inner ear development | cellular calcium ion homeostasis | homeostatic process | response to zinc ion | cation transmembrane transport | potassium channel activity | regulation of signaling receptor activity | receptor regulator activity | metal ion transmembrane transporter activity | anatomical structure development | voltage-gated cation channel activity | growth factor activity | potassium ion transmembrane transporter activity | ear development | chemical homeostasis | receptor ligand activity | animal organ development | ion homeostasis | inorganic cation transmembrane transport | cation channel activity | regulation of cell communication | transmembrane transport | signaling | inorganic cation transmembrane transporter activity | monovalent inorganic cation transmembrane transporter activity | voltage-gated channel activity | cation transport | channel activity | negative regulation of cytosolic calcium ion concentration | developmental process | cochlea development | potassium ion transmembrane transport | cellular metal ion homeostasis | central nervous system development | ion channel activity | ion transport | divalent inorganic cation homeostasis | substrate-specific channel activity | regulation of signaling | cardiac conduction | multicellular organismal process

GO Cellular Component

integral component of membrane | cell | intrinsic component of membrane | plasma membrane | integral component of plasma membrane | extracellular region | extracellular space | cell periphery | membrane | intrinsic component of plasma membrane