KCNC1; Potassium voltage-gated channel subfamily C member 1; NGK2; Voltage-gated potassium channel subunit Kv3.1; Voltage-gated potassium channel subunit Kv4
Species
Homo sapiens (Human)
Source
in vitro E.coli expression system
Expression Region
1-511
Target Protein Sequence
MGQGDESERIVINVGGTRHQTYRSTLRTLPGTRLAWLAEPDAHSHFDYDPRADEFFFDRH PGVFAHILNYYRTGKLHCPADVCGPLYEEELAFWGIDETDVEPCCWMTYRQHRDAEEALD SFGGAPLDNSADDADADGPGDSGDGEDELEMTKRLALSDSPDGRPGGFWRRWQPRIWALF EDPYSSRYARYVAFASLFFILVSITTFCLETHERFNPIVNKTEIENVRNGTQVRYYREAE TEAFLTYIEGVCVVWFTFEFLMRVIFCPNKVEFIKNSLNIIDFVAILPFYLEVGLSGLSS KAAKDVLGFLRVVRFVRILRIFKLTRHFVGLRVLGHTLRASTNEFLLLIIFLALGVLIFA TMIYYAERIGAQPNDPSASEHTHFKNIPIGFWWAVVTMTTLGYGDMYPQTWSGMLVGALC ALAGVLTIAMPVPVIVNNFGMYYSLAMAKQKLPKKKKKHIPRPPQLGSPNYCKSVVNSPH HSTQSDTCPLAQEEILEINRAGRKPLRGMSI
Note: The complete
sequence may include tag sequence, target protein sequence, linker sequence and extra sequence that is
translated with the protein sequence for the purpose(s) of secretion, stability, solubility, etc.
If the exact amino acid sequence of this recombinant protein is critical to your application,
please explicitly request the full and complete sequence of this protein before ordering.
Protein Length
Full length protein
Tag Info
N-terminal 10xHis-tagged
The tag type will be determined during production process. If you have specified tag type, please tell us and we will develop the specified tag preferentially.
Storage Condition
Store at -20°C, for extended storage, conserve at -20°C or -80°C.
Shelf Life
The shelf life is related to many factors, storage state, buffer ingredients, storage temperature and the stability of the protein itself.
Generally, the shelf life of liquid form is 6 months at -20°C/-80°C. The shelf life of lyophilized form is 12 months at -20°C/-80°C.
Notes
Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.
Voltage-gated potassium channel that plays an important role in the rapid repolarization of fast-firing brain neurons. The channel opens in response to the voltage difference across the membrane, forming a potassium-selective channel through which potassium ions pass in accordance with their electrochemical gradient. Can form functional homotetrameric channels and heterotetrameric channels that contain variable proportions of KCNC2, and possibly other family members as well. Contributes to fire sustained trains of very brief action potentials at high frequency in pallidal neurons.
Gene References into Functions
A recurrent de novo mutation in KCNC1 (c.959G>A, p.Arg320His) has been identified recently as one of the important genetic causes of progress myoclonic epilepsy. This recurrent mutation in KCNC1 was identified in the two brothers who showed characteristic features of myoclonus epilepsy and ataxia due to potassium channel mutation (MEAK). The asymptomatic mother was suspected as being mosaic for this mutation.PMID:29428275
A nonsense variant in KCNC1 gene was identified in three family members with intellectual disability without seizures.PMID:28145425
reviews the phenotype/genotype of progressive myoclonus epilepsy and ataxia due to potassium channel mutation (MEAK)associated with KCNC1 mutations [review]PMID:27629860
KCNC1 produces a resurgent current during repolarization, ensuring enough repolarizing power to terminate each action potential. The current results from a combination of steep voltage-dependent gating kinetics and ultra-fast voltage-sensor relaxation.PMID:26673941
A recurrent KCNC1 de novo mutation, c.959G>A (p.Arg320His), is a new major cause for progressive myoclonus epilepsy. It has a dominant-negative loss-of-function effect.PMID:25401298
Findings show a decrease in Kv3.1b channel protein in schizophrenia neocortex, a deficit that is restored by antipsychotic drugsPMID:23628987
Describes localization in mouse brain of two isoforms - the longer is called b and the shorter is called a.PMID:12091563
Describes two rat isoforms of Kv3.1, alpha is the longer one and beta is the shorter onePMID:1432046
KChIP4a suppresses A-type Kv4 current via ER retention and enhancement of Kv4 closed-state inactivation.PMID:23576435
Although all KV3 subunit transcripts are significantly expressed at embryonic age in whole mouse brain extracts, only KV3.1, KV3.2 and KV3.4 subunit transgenic proteins are present.PMID:21912965
demonstrated that glycosylation was necessary for both DPP10 trafficking to the cell surface and functional interaction with Kv4 channelsPMID:22387313
Kv3.1 channels are transported into axons by binding to kinesin I.PMID:21106837