Human Gene KCNQ1 (ENST00000155840.12_8) from GENCODE V47lift37
  Description: Potassium channel that plays an important role in a number of tissues, including heart, inner ear, stomach and colon (PubMed:10646604, PubMed:25441029). Associates with KCNE beta subunits that modulates current kinetics (PubMed:9312006, PubMed:9108097, PubMed:8900283, PubMed:10646604, PubMed:11101505, PubMed:19687231). Induces a voltage-dependent current by rapidly activating and slowly deactivating potassium-selective outward current (PubMed:9312006, PubMed:9108097, PubMed:8900283, PubMed:10646604, PubMed:11101505, PubMed:25441029). Promotes also a delayed voltage activated potassium current showing outward rectification characteristic (By similarity). During beta-adrenergic receptor stimulation participates in cardiac repolarization by associating with KCNE1 to form the I(Ks) cardiac potassium current that increases the amplitude and slows down the activation kinetics of outward potassium current I(Ks) (By similarity) (PubMed:9312006, PubMed:9108097, PubMed:8900283, PubMed:10646604, PubMed:11101505). Muscarinic agonist oxotremorine-M strongly suppresses KCNQ1/KCNE1 current (PubMed:10713961). When associated with KCNE3, forms the potassium channel that is important for cyclic AMP-stimulated intestinal secretion of chloride ions (PubMed:10646604). This interaction with KCNE3 is reduced by 17beta-estradiol, resulting in the reduction of currents (By similarity). During conditions of increased substrate load, maintains the driving force for proximal tubular and intestinal sodium ions absorption, gastric acid secretion, and cAMP- induced jejunal chloride ions secretion (By similarity). Allows the provision of potassium ions to the luminal membrane of the secretory canaliculus in the resting state as well as during stimulated acid secretion (By similarity). When associated with KCNE2, forms a heterooligomer complex leading to currents with an apparently instantaneous activation, a rapid deactivation process and a linear current-voltage relationship and decreases the amplitude of the outward current (PubMed:11101505). When associated with KCNE4, inhibits voltage-gated potassium channel activity (PubMed:19687231). When associated with KCNE5, this complex only conducts current upon strong and continued depolarization (PubMed:12324418). Also forms a heterotetramer with KCNQ5; has a voltage-gated potassium channel activity (PubMed:24855057). Binds with phosphatidylinositol 4,5- bisphosphate (PubMed:25037568). KCNQ1-KCNE2 channel associates with Na(+)-coupled myo-inositol symporter in the apical membrane of choroid plexus epithelium and regulates the myo-inositol gradient between blood and cerebrospinal fluid with an impact on neuron excitability. (from UniProt P51787)
Gencode Transcript: ENST00000155840.12_8
Gencode Gene: ENSG00000053918.20_15
Transcript (Including UTRs)
   Position: hg19 chr11:2,466,238-2,870,335 Size: 404,098 Total Exon Count: 16 Strand: +
Coding Region
   Position: hg19 chr11:2,466,329-2,869,233 Size: 402,905 Coding Exon Count: 16 

Page IndexSequence and LinksUniProtKB CommentsPrimersMalaCardsCTD
Gene AllelesRNA-Seq ExpressionMicroarray ExpressionRNA StructureProtein StructureOther Species
GO AnnotationsmRNA DescriptionsPathwaysOther NamesGeneReviewsModel Information
Methods
Data last updated at UCSC: 2024-08-22 23:36:26

-  Sequence and Links to Tools and Databases
 
Genomic Sequence (chr11:2,466,238-2,870,335)mRNA (may differ from genome)Protein (676 aa)
Gene SorterGenome BrowserOther Species FASTAVisiGeneGene interactionsTable Schema
AlphaFoldBioGPSEnsemblExonPrimerGeneCardsHGNC
MalacardsMGIPubMedReactomeUniProtKBWikipedia

-  Comments and Description Text from UniProtKB
  ID: KCNQ1_HUMAN
DESCRIPTION: RecName: Full=Potassium voltage-gated channel subfamily KQT member 1; AltName: Full=IKs producing slow voltage-gated potassium channel subunit alpha KvLQT1; AltName: Full=KQT-like 1; AltName: Full=Voltage-gated potassium channel subunit Kv7.1;
FUNCTION: Probably important in cardiac repolarization. Associates with KCNE1 (MinK) to form the I(Ks) cardiac potassium current. Elicits a rapidly activating, potassium-selective outward current. Muscarinic agonist oxotremorine-M strongly suppresses KCNQ1/KCNE1 current in CHO cells in which cloned KCNQ1/KCNE1 channels were coexpressed with M1 muscarinic receptors. May associate also with KCNE3 (MiRP2) to form the potassium channel that is important for cyclic AMP-stimulated intestinal secretion of chloride ions, which is reduced in cystic fibrosis and pathologically stimulated in cholera and other forms of secretory diarrhea.
SUBUNIT: Heterotetramer with KCNE1 (MinK) or KCNE3 (MiRP2). Interacts with CALM.
SUBCELLULAR LOCATION: Cell membrane; Multi-pass membrane protein. Cytoplasmic vesicle membrane; Multi-pass membrane protein.
TISSUE SPECIFICITY: Abundantly expressed in heart, pancreas, prostate, kidney, small intestine and peripheral blood leukocytes. Less abundant in placenta, lung, spleen, colon, thymus, testis and ovaries.
DOMAIN: The segment S4 is probably the voltage-sensor and is characterized by a series of positively charged amino acids at every third position.
DISEASE: Defects in KCNQ1 are the cause of long QT syndrome type 1 (LQT1) [MIM:192500]; also known as Romano-Ward syndrome (RWS). Long QT syndromes are heart disorders characterized by a prolonged QT interval on the ECG and polymorphic ventricular arrhythmias. They cause syncope and sudden death in response to exercise or emotional stress. LQT1 inheritance is an autosomal dominant.
DISEASE: Defects in KCNQ1 are the cause of Jervell and Lange- Nielsen syndrome type 1 (JLNS1) [MIM:220400]. JLNS1 is an autosomal recessive disorder characterized by congenital deafness, prolongation of the QT interval, syncopal attacks due to ventricular arrhythmias, and a high risk of sudden death.
DISEASE: Defects in KCNQ1 are the cause of familial atrial fibrillation type 3 (ATFB3) [MIM:607554]. Atrial fibrillation is a common disorder of cardiac rhythm that is hereditary in a small subgroup of patients. It is characterized by disorganized atrial electrical activity and ineffective atrial contraction promoting blood stasis in the atria and reduces ventricular filling. It can result in palpitations, syncope, thromboembolic stroke, and congestive heart failure.
DISEASE: Defects in KCNQ1 are the cause of short QT syndrome type 2 (SQT2) [MIM:609621]. Short QT syndromes are heart disorders characterized by idiopathic persistently and uniformly short QT interval on ECG in the absence of structural heart disease in affected individuals. They cause syncope and sudden death.
MISCELLANEOUS: Mutagenesis experiments were carried out by expressing in Xenopus oocytes or COS-7 cells KCNQ1 mutants either individually (homomultimers) or in combination with both wild-type KCNQ1 (mut/wt homomultimers) and minK (heteromultimers).
SIMILARITY: Belongs to the potassium channel family. KQT (TC 1.A.1.15) subfamily. Kv7.1/KCNQ1 sub-subfamily.
SEQUENCE CAUTION: Sequence=BAA34739.1; Type=Frameshift; Positions=129, 159;
WEB RESOURCE: Name=GeneReviews; URL="http://www.ncbi.nlm.nih.gov/sites/GeneTests/lab/gene/KCNQ1";
WEB RESOURCE: Name=Wikipedia; Note=KvLQT1 entry; URL="http://en.wikipedia.org/wiki/KvLQT1";

-  Primer design for this transcript
 

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-  MalaCards Disease Associations
  MalaCards Gene Search: KCNQ1
Diseases sorted by gene-association score: long qt syndrome 1* (1802), jervell and lange-nielsen syndrome* (1723), short qt syndrome 2* (1329), atrial fibrillation, familial, 3* (1229), short qt syndrome* (547), kcnq1-related familial atrial fibrillation* (500), atrial fibrillation* (464), familial short qt syndrome* (443), familial long qt syndrome* (314), familial atrial fibrillation* (281), long qt syndrome* (276), long qt syndrome 2* (242), cardiac conduction disease with or without dilated cardiomyopathy* (231), syncope (19), sudden cardiac death (17), beckwith-wiedemann syndrome (14), intrinsic cardiomyopathy (14), long qt syndrome-3 (10), long qt syndrome 5 (10), atrioventricular block (10), long qt syndrome 13 (9), long qt syndrome 6 (9), sudden infant death syndrome (8), ventricular fibrillation, familial, 1 (7), long qt syndrome 12 (7), cardiac arrest (7), ventricular tachycardia, catecholaminergic polymorphic, 1 (7), timothy syndrome (6), brugada syndrome (5), heart conduction disease (5), deafness, autosomal dominant 2a (5), heart disease (4), catecholaminergic polymorphic ventricular tachycardia (4), left ventricular noncompaction (2), cystic fibrosis (2)
* = Manually curated disease association

-  Comparative Toxicogenomics Database (CTD)
  The following chemicals interact with this gene

+  Common Gene Haplotype Alleles
  Press "+" in the title bar above to open this section.

-  RNA-Seq Expression Data from GTEx (53 Tissues, 570 Donors)
  Highest median expression: 113.61 RPKM in Adrenal Gland
Total median expression: 353.64 RPKM



View in GTEx track of Genome Browser    View at GTEx portal     View GTEx Body Map

+  Microarray Expression Data
  Press "+" in the title bar above to open this section.

-  mRNA Secondary Structure of 3' and 5' UTRs
 
RegionFold EnergyBasesEnergy/Base
Display As
5' UTR -45.7091-0.502 Picture PostScript Text
3' UTR -497.301102-0.451 Picture PostScript Text

The RNAfold program from the Vienna RNA Package is used to perform the secondary structure predictions and folding calculations. The estimated folding energy is in kcal/mol. The more negative the energy, the more secondary structure the RNA is likely to have.

-  Protein Domain and Structure Information
  InterPro Domains: Graphical view of domain structure
IPR005821 - Ion_trans_dom
IPR003091 - K_chnl
IPR003937 - K_chnl_volt-dep_KCNQ
IPR013821 - K_chnl_volt-dep_KCNQ_C
IPR005827 - K_chnl_volt-dep_KCQN1

Pfam Domains:
PF00520 - Ion transport protein
PF03520 - KCNQ voltage-gated potassium channel
PF07885 - Ion channel

SCOP Domains:
81324 - Voltage-gated potassium channels

Protein Data Bank (PDB) 3-D Structure
MuPIT help
3BJ4 - X-ray MuPIT 3HFC - X-ray MuPIT 3HFE - X-ray MuPIT


ModBase Predicted Comparative 3D Structure on P51787
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-  Orthologous Genes in Other Species
  Orthologies between human, mouse, and rat are computed by taking the best BLASTP hit, and filtering out non-syntenic hits. For more distant species reciprocal-best BLASTP hits are used. Note that the absence of an ortholog in the table below may reflect incomplete annotations in the other species rather than a true absence of the orthologous gene.
MouseRatZebrafishD. melanogasterC. elegansS. cerevisiae
No orthologNo orthologNo orthologNo orthologNo orthologNo ortholog
Gene DetailsGene Details  Gene Details 
Gene SorterGene Sorter  Gene Sorter 
 RGDEnsembl WormBase 
      
      

-  Gene Ontology (GO) Annotations with Structured Vocabulary
  Molecular Function:
GO:0005216 ion channel activity
GO:0005244 voltage-gated ion channel activity
GO:0005249 voltage-gated potassium channel activity
GO:0005251 delayed rectifier potassium channel activity
GO:0005267 potassium channel activity
GO:0005515 protein binding
GO:0005516 calmodulin binding
GO:0005546 phosphatidylinositol-4,5-bisphosphate binding
GO:0008157 protein phosphatase 1 binding
GO:0015271 outward rectifier potassium channel activity
GO:0034236 protein kinase A catalytic subunit binding
GO:0034237 protein kinase A regulatory subunit binding
GO:0044325 ion channel binding
GO:0086008 voltage-gated potassium channel activity involved in cardiac muscle cell action potential repolarization
GO:0086089 voltage-gated potassium channel activity involved in atrial cardiac muscle cell action potential repolarization
GO:0097110 scaffold protein binding
GO:1902282 voltage-gated potassium channel activity involved in ventricular cardiac muscle cell action potential repolarization

Biological Process:
GO:0006349 regulation of gene expression by genetic imprinting
GO:0006811 ion transport
GO:0006813 potassium ion transport
GO:0007605 sensory perception of sound
GO:0008016 regulation of heart contraction
GO:0010460 positive regulation of heart rate
GO:0016458 gene silencing
GO:0034765 regulation of ion transmembrane transport
GO:0035690 cellular response to drug
GO:0048839 inner ear development
GO:0050892 intestinal absorption
GO:0055085 transmembrane transport
GO:0060048 cardiac muscle contraction
GO:0060306 regulation of membrane repolarization
GO:0060307 regulation of ventricular cardiac muscle cell membrane repolarization
GO:0060372 regulation of atrial cardiac muscle cell membrane repolarization
GO:0060452 positive regulation of cardiac muscle contraction
GO:0060453 regulation of gastric acid secretion
GO:0070293 renal absorption
GO:0071320 cellular response to cAMP
GO:0071435 potassium ion export
GO:0071805 potassium ion transmembrane transport
GO:0071872 cellular response to epinephrine stimulus
GO:0072358 cardiovascular system development
GO:0086005 ventricular cardiac muscle cell action potential
GO:0086009 membrane repolarization
GO:0086011 membrane repolarization during action potential
GO:0086013 membrane repolarization during cardiac muscle cell action potential
GO:0086014 atrial cardiac muscle cell action potential
GO:0086091 regulation of heart rate by cardiac conduction
GO:0097623 potassium ion export across plasma membrane
GO:0098914 membrane repolarization during atrial cardiac muscle cell action potential
GO:0098915 membrane repolarization during ventricular cardiac muscle cell action potential
GO:1901381 positive regulation of potassium ion transmembrane transport
GO:1902260 negative regulation of delayed rectifier potassium channel activity
GO:1903817 negative regulation of voltage-gated potassium channel activity

Cellular Component:
GO:0005737 cytoplasm
GO:0005764 lysosome
GO:0005768 endosome
GO:0005769 early endosome
GO:0005770 late endosome
GO:0005783 endoplasmic reticulum
GO:0005886 plasma membrane
GO:0008076 voltage-gated potassium channel complex
GO:0016020 membrane
GO:0016021 integral component of membrane
GO:0016323 basolateral plasma membrane
GO:0030659 cytoplasmic vesicle membrane
GO:0031410 cytoplasmic vesicle
GO:0034702 ion channel complex
GO:0045121 membrane raft


-  Descriptions from all associated GenBank mRNAs
  LF205122 - JP 2014500723-A/12625: Polycomb-Associated Non-Coding RNAs.
AF000571 - Homo sapiens kidney and cardiac voltage dependent K+ channel (KvLQT1) mRNA, complete cds.
AB464057 - Synthetic construct DNA, clone: pF1KB7194, Homo sapiens KCNQ1 gene for potassium voltage-gated channel, KQT-like subfamily, member 1, without stop codon, in Flexi system.
BC111847 - Synthetic construct Homo sapiens clone IMAGE:40080835, MGC:133389 KCNQ1 protein (KCNQ1) mRNA, encodes complete protein.
AY114213 - Homo sapiens potassium channel protein KCNQ1 variant mRNA, complete cds.
AF003743 - Homo sapiens delayed rectifier potassium channel (KVLQT1-Iso5) mRNA, 5' UTR and partial cds.
U89364 - Homo sapiens voltage gated potassium channel (KVLQT1) mRNA, complete cds.
EF010935 - Homo sapiens potassium voltage-gated channel isoform 2 (KCNQ1) mRNA, partial cds, alternatively spliced.
AF051426 - Homo sapiens slow delayed rectifier channel subunit mRNA, complete cds.
AK129678 - Homo sapiens cDNA FLJ26167 fis, clone ADG02859, highly similar to Voltage-gated potassium channel protein KQT-like 1.
AK290618 - Homo sapiens cDNA FLJ76116 complete cds, highly similar to Homo sapiens potassium voltage-gated channel, KQT-like subfamily, member 1 (KCNQ1), transcript variant 2, mRNA.
BC113545 - Homo sapiens potassium voltage-gated channel, KQT-like subfamily, member 1, mRNA (cDNA clone MGC:142105 IMAGE:8322597), complete cds.
HQ258460 - Synthetic construct Homo sapiens clone IMAGE:100072889 potassium voltage-gated channel, KQT-like subfamily, member 1 (KCNQ1), transcript variant 2 (KCNQ1) gene, encodes complete protein.
KJ891509 - Synthetic construct Homo sapiens clone ccsbBroadEn_00903 KCNQ1 gene, encodes complete protein.
BC017074 - Homo sapiens, Similar to potassium voltage-gated channel, KQT-like subfamily, member 1, clone IMAGE:3846095, mRNA, partial cds.
MA440699 - JP 2018138019-A/12625: Polycomb-Associated Non-Coding RNAs.
LF212168 - JP 2014500723-A/19671: Polycomb-Associated Non-Coding RNAs.
EF010934 - Homo sapiens potassium voltage-gated channel isoform 1 (KCNQ1) mRNA, partial cds, alternatively spliced.
U86146 - Human voltage-gated potassium channel KvLQT1 (KVLQT1) mRNA, partial cds.
MA447745 - JP 2018138019-A/19671: Polycomb-Associated Non-Coding RNAs.
LF207993 - JP 2014500723-A/15496: Polycomb-Associated Non-Coding RNAs.
MA443570 - JP 2018138019-A/15496: Polycomb-Associated Non-Coding RNAs.
JD077637 - Sequence 58661 from Patent EP1572962.
JD278181 - Sequence 259205 from Patent EP1572962.
JD096278 - Sequence 77302 from Patent EP1572962.
JD189523 - Sequence 170547 from Patent EP1572962.
JD502117 - Sequence 483141 from Patent EP1572962.
JD120962 - Sequence 101986 from Patent EP1572962.
JD482910 - Sequence 463934 from Patent EP1572962.
JD457636 - Sequence 438660 from Patent EP1572962.
JD103831 - Sequence 84855 from Patent EP1572962.
JD054922 - Sequence 35946 from Patent EP1572962.
JD123689 - Sequence 104713 from Patent EP1572962.
JD387585 - Sequence 368609 from Patent EP1572962.
JD265101 - Sequence 246125 from Patent EP1572962.
JD082211 - Sequence 63235 from Patent EP1572962.
JD358957 - Sequence 339981 from Patent EP1572962.
JD477495 - Sequence 458519 from Patent EP1572962.
JD472767 - Sequence 453791 from Patent EP1572962.
JD059976 - Sequence 41000 from Patent EP1572962.
JD178230 - Sequence 159254 from Patent EP1572962.
JD405811 - Sequence 386835 from Patent EP1572962.
JD162482 - Sequence 143506 from Patent EP1572962.
JD129227 - Sequence 110251 from Patent EP1572962.
JD165014 - Sequence 146038 from Patent EP1572962.

-  Biochemical and Signaling Pathways
  Reactome (by CSHL, EBI, and GO)

Protein P51787 (Reactome details) participates in the following event(s):

R-HSA-5577050 AKAP9:KCNQ1 tetramer:KCNE dimer transports K+ from cytosol to extracellular region
R-HSA-1296127 Activation of voltage gated Potassium channels
R-HSA-5576890 Phase 3 - rapid repolarisation
R-HSA-5576893 Phase 2 - plateau phase
R-HSA-5576891 Cardiac conduction
R-HSA-397014 Muscle contraction
R-HSA-1296072 Voltage gated Potassium channels
R-HSA-1296071 Potassium Channels
R-HSA-112316 Neuronal System

-  Other Names for This Gene
  Alternate Gene Symbols: ENST00000155840.1, ENST00000155840.10, ENST00000155840.11, ENST00000155840.2, ENST00000155840.3, ENST00000155840.4, ENST00000155840.5, ENST00000155840.6, ENST00000155840.7, ENST00000155840.8, ENST00000155840.9, KCNA8 , KCNA9 , KCNQ1 , KCNQ1_HUMAN, KVLQT1 , NM_001406837, O00347, O60607, O94787, P51787, Q14D14, Q7Z6G9, Q92960, Q9UMN8, Q9UMN9, uc317cbm.1, uc317cbm.2
UCSC ID: ENST00000155840.12_8
RefSeq Accession: NM_000218.3
Protein: P51787 (aka KCNQ1_HUMAN or CIQ1_HUMAN)

-  GeneReviews for This Gene
  GeneReviews article(s) related to gene KCNQ1:
bws (Beckwith-Wiedemann Syndrome)
jln (Jervell and Lange-Nielsen Syndrome)
rws (Long QT Syndrome Overview)

-  Gene Model Information
  Click here for a detailed description of the fields of the table above.

-  Methods, Credits, and Use Restrictions
  Click here for details on how this gene model was made and data restrictions if any.