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0ACCN2_HUMAN*   SwissProt (?) | Description Local Annotation Link Reference
General Information
NameACCN2
DescriptionAmiloride-sensitive cation channel 2, neuronal (acid-sensing ion channel 1) (asic1) (brain sodium channel 2) (bnac2).
SpeciesHomo sapiens (NCBI taxonomy ID: 9606)
GO0005887 integral to plasma membrane (TAS)
0015280 amiloride-sensitive sodium channel activity (NAS)
0005515 protein binding (IPI)
0009268 response to pH (TAS)
0007165 signal transduction (TAS)
0006814 sodium ion transport (NAS)
0006810 transport (TAS)

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schematic display of those terms with internal associations, click the node and browse the corresponding GO term
Domain Architecture (Details)
InterPro domains unassigned to SynO:
The apical membrane of many tight epithelia contains sodium channels thatare primarily characterised by their high affinity to the diuretic blockeramiloride . These channels mediate the first step of active sodiumreabsorption essential for the maintenance of body salt and waterhomeostasis . In vertebrates.he channels control reabsorption ofsodium in kidney.olon.ung and sweat glands; they also play a role intaste perception.Members of the epithelial Na+ channel (ENaC) family fall into foursubfamilies.ermed alpha.eta.amma and delta . The proteins exhibitthe same apparent topology.ach with two transmembrane (TM) spanningsegments.eparated by a large extracellular loop. In most ENaC proteinsstudied to date.he extracellular domains are highly conserved and containnumerous cysteine residues.ith flanking C-terminal amphipathic TM regions.ostulated to contribute to the formation of the hydrophilic pores of theoligomeric channel protein complexes. It is thought that the well-conservedextracellular domains serve as receptors to control the activities of thechannels.Vertebrate ENaC proteins are similar to degenerins of Caenorhabditis elegans: deg-1.el-1.ec-4.ec-10 and unc-8. These proteins can be mutated to cause neuronal degradation.nd are also thought to form sodium channels.Structurally.he proteins that belong to this family consist of about 510to 920 amino acid residues. They are made of an intracellular N-terminusregion followed by a transmembrane domain. large extracellular loop.second transmembrane segment and a C-terminal intracellular tail .
  IPR001873:Na+ channel, amiloride-sensitive
The epithelial Na+ channel (ENaC) proteins consist of sodium channels from animals and has no recognizable homologues in other eukaryotes or bacteria. The vertebrate ENaC proteins from epithelial cells cluster tightly together on the phylogenetic tree: voltage-insensitive ENaC homologues are also found in the brain. Eleven sequenced Caenorhabditis elegans proteins.ncluding the degenerins ().re distantly related to the vertebrate proteins as well as to each other. At least some of the proteins in this group form part of a mechano-transducing complex for touch sensitivity. Others include the acid-sensing ion channels.SIC1-3 that are homo- or hetero-oligomeric neuronal H+-gated channels that mediate pain sensation in response to tissue acidosis. Mammalian ENaC is important for the maintenance of Na+ balance and the regulation of blood pressure. Three homologous ENaC subunits.. and g.ave been shown to assemble to form the highly Na+-selective channel.
  IPR004724:Epithelial sodium channel
IPR001873:ASC 
Evalue:-184.376754760742 
Location:21-457
SequencesProtein: ACCN2_HUMAN (528 aa)
mRNA: NM_001095 NM_020039
Local Annotation
Synapse Ontology
introduce the substructure of the synapse and the location where the molecule can be seen. It will contain all the constructive special organelle and molecule we known.
sdb:0001 Structure/Biochemistry of synapse  (Evidence:keywords)
transport of vesicles in the presynaptic neuron
sdb:0017 Mobilization: synapsins, CAM kinase I  (Evidence:keywords)
activation of protein kinase C
sdb:0206 activation of protein kinase C  (Evidence:keywords)
Na channel plays an important role in the course of action potential.
sdb:0287 Na channel  (Evidence:keywords)
KO assignmentK04829
  Level 3 annotation:
    amiloride-sensitive cation channel 2, neuronal
  Level 2 annotation:
    Ion channels
Loci Structure (Details)Loci index, Chromosomal location, Length, Possible relational loci clusterExon1: 72 residues, 48737753-48737966Exon2: 128 residues, 48738800-48739178Exon3: 67 residues, 48739808-48740004Exon4: 52 residues, 48757262-48757413Exon5: 44 residues, 48758049-48758177Exon6: 54 residues, 48758470-48758627Exon7: 21 residues, 48758973-48759030Exon8: 53 residues, 48759951-48760105Exon9: 32 residues, 48760547-48760639Exon10: 28 residues, 48761151-48761231Exon11: 37 residues, 48761309-48761414Exon12: 690 residues, 48761594-48763660Exon13: 2 residues, -Jump to ACCN2_HUMANExon1: 72 residues, 48737753-48737966Exon2: 128 residues, 48738800-48739178Exon3: 67 residues, 48739808-48740004Exon4: 52 residues, 48757262-48757413Exon5: 44 residues, 48758049-48758177Exon6: 54 residues, 48758470-48758627Exon7: 21 residues, 48758973-48759030Exon8: 53 residues, 48759951-48760105Exon9: 78 residues, 48760547-48760777Exon10: 28 residues, 48761151-48761231Exon11: 37 residues, 48761309-48761414Exon12: 690 residues, 48761594-48763660Exon13: 2 residues, -Jump to ACCN2_HUMAN  
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Loci Cluster (Details)Loci: 4027 47682322-47698859 ~-17K 8773(PRKAG1)(-)Loci: 4028 47744734-47750042 ~-5K 8775(-)Loci: 4029 47807832-47811571 ~-4K 8784(-)Loci: 4030 47864851-47869128 ~-4K 8785(TUBA3)(-)Loci: 2749 47975175-47978747 ~-4K 8788(PRPH)(+)Loci: 2750 48219206-48238344 ~-19K 8796(KCNH3)(+)Loci: 4031 48546946-48583987 ~-37K 8814(FAIM2)(-)Loci: 2751 48630795-48638929 ~-8K 8815(AQP2)(+)Loci: 2752 48737753-48763660 ~-26K 8820(ACCN2)(+)Loci: 2748 47658502-47662746 ~-4K 8771(WNT1)(+)Link out to UCSC