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ATP-sensitive inward rectifier potassium channel 10, Recombinant Protein

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产品名称: ATP-sensitive inward rectifier potassium channel 10, Recombinant Protein
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简单介绍

ATP-sensitive inward rectifier potassium channel 10, Recombinant Protein


ATP-sensitive inward rectifier potassium channel 10, Recombinant Protein  的详细介绍
Product Name

ATP-sensitive inward rectifier potassium channel 10 (KCNJ10), Recombinant Protein

Popular Item
Full Product Name

Recombinant Human ATP-sensitive inward rectifier potassium channel 10

Product Synonym Names
ATP-dependent inwardly rectifying potassium channel Kir4.1; Inward rectifier K(+) channel Kir1.2; Potassium channel, inwardly rectifying subfamily J member 10
Product Gene Name

KCNJ10 recombinant protein

[Similar Products]
Research Use Only
For Research Use Only. Not for use in diagnostic procedures.
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Sequence Positions
165-379aa; Cytoplasmic Domain
Sequence
FLAKIARPKK RAETIRFSQH AVVASHNGKP CLMIRVANMR KSLLIGCQVT GKLLQTHQTK EGENIRLNQV NVTFQVDTAS DSPFLILPLT FYHVVDETSP LKDLPLRSGE GDFELVLILS GTVESTSATC QVRTSYLPEE ILWGYEFTPA ISLSASGKYI ADFSLFDQVV KVASPSGLRD STVRYGDPEK LKLEESLREQ AEKEGSALSV RISNV
OMIM
602208
3D Structure
ModBase 3D Structure for P78508
Host
E Coli or Yeast or Baculovirus or Mammalian Cell
Purity/Purification
Greater than 90% as determined by SDS-PAGE. (lot specific)
Form/Format
Liquid containing glycerol
Tag Information
This protein contains an N-terminal tag and may also contain a C-terminal tag. Tag types are determined by various factors including tag-protein stability, please inquire for tag information.
Sterility
Sterile filter available upon request.
Endotoxin
Low endotoxin available upon request.
Preparation and Storage
Store at -20 degree C, for extended storage, conserve at -20 degree C or -80 degree C.
ISO Certification
Manufactured in an ISO 13485:2003 and EN ISO 13485:2012 Certified Laboratory.
Other Notes
Small volumes of KCNJ10 recombinant protein vial(s) may occasionally become entrapped in the seal of the product vial during shipment and storage. If necessary, briefly centrifuge the vial on a tabletop centrifuge to dislodge any liquid in the container`s cap. Certain products may require to ship with dry ice and additional dry ice fee may apply.
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Related Product Information for
KCNJ10 recombinant protein
May be responsible for potassium buffering action of glial cells in the brain. Inward rectifier potassium channels are characterized by a greater tendency to allow potassium to flow into the cell rather than out of it. Their voltage dependence is regulated by the concentration of extracellular potassium; as external potassium is raised, the voltage range of the channel opening shifts to more positive voltages. The inward rectification is mainly due to the blockage of outward current by internal magnesium. Can be blocked by extracellular barium and cesium.
Product Categories/Family for KCNJ10 recombinant protein
Transport

SDS-PAGE of KCNJ10 recombinant protein
KCNJ10 recombinant protein SDS-PAGE image
(Note: Representative image, actual molecular weight may vary depending on Tag type and expression host)
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NCBI/Uniprot data below describe general gene information for KCNJ10. It may not necessarily be applicable to this product.
NCBI GI #
25121966
NCBI GeneID
3766
NCBI Accession #
NP_002232.2 [Other Products]
NCBI GenBank Nucleotide #
NM_002241.4 [Other Products]
UniProt Primary Accession #
P78508 [Other Products]
UniProt Secondary Accession #
Q5VUT9; Q8N4I7; Q92808; A3KME7[Other Products]
UniProt Related Accession #
P78508[Other Products]
Molecular Weight
39.8kD
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NCBI Official Full Name
ATP-sensitive inward rectifier potassium channel 10
NCBI Official Synonym Full Names
potassium voltage-gated channel subfamily J member 10
NCBI Official Symbol
KCNJ10  [Similar Products]
NCBI Official Synonym Symbols
KIR1.2; KIR4.1; SESAME; BIRK-10; KCNJ13-PEN
  [Similar Products]
NCBI Protein Information
ATP-sensitive inward rectifier potassium channel 10
UniProt Protein Name
ATP-sensitive inward rectifier potassium channel 10
UniProt Synonym Protein Names
ATP-dependent inwardly rectifying potassium channel Kir4.1; Inward rectifier K(+) channel Kir1.2; Potassium channel, inwardly rectifying subfamily J member 10
Protein Family
ATP-sensitive inward rectifier potassium channel
UniProt Gene Name
KCNJ10  [Similar Products]
UniProt Entry Name
KCJ10_HUMAN
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NCBI Summary for KCNJ10
This gene encodes a member of the inward rectifier-type potassium channel family, characterized by having a greater tendency to allow potassium to flow into, rather than out of, a cell. The encoded protein may form a heterodimer with another potassium channel protein and may be responsible for the potassium buffering action of glial cells in the brain. Mutations in this gene have been associated with seizure susceptibility of common idiopathic generalized epilepsy syndromes. [provided by RefSeq, Jul 2008]
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UniProt Comments for KCNJ10
Kir4.1: May be responsible for potassium buffering action of glial cells in the brain. Inward rectifier potassium channels are characterized by a greater tendency to allow potassium to flow into the cell rather than out of it. Their voltage dependence is regulated by the concentration of extracellular potassium; as external potassium is raised, the voltage range of the channel opening shifts to more positive voltages. The inward rectification is mainly due to the blockage of outward current by internal magnesium. Can be blocked by extracellular barium and cesium. Defects in KCNJ10 are the cause of seizures, sensorineural deafness, ataxia, mental retardation, and electrolyte imbalance (SESAMES). A complex disorder characterized by generalized seizures with onset in infancy, delayed psychomotor development, ataxia, sensorineural hearing loss, hypokalemia, metabolic alkalosis, and hypomagnesemia. Belongs to the inward rectifier-type potassium channel (TC 1.A.2.1) family. KCNJ10 subfamily.

Protein type: Membrane protein, integral; Membrane protein, multi-pass; Channel, ligand-gated; Channel, potassium

Chromosomal Location of Human Ortholog: 1q23.2

Cellular Component: basolateral plasma membrane; integral to plasma membrane; plasma membrane

Molecular Function: ATP binding; ATP-activated inward rectifier potassium channel activity; protein binding

Biological Process: ***** walking behavior; glutamate uptake during transmission of nerve impulse; myelination in the central nervous system; potassium ion homeostasis; potassium ion import; potassium ion transport; regulation of long-term neuronal synaptic plasticity; regulation of resting membrane potential; synaptic transmission; visual perception

Disease: Deafness, Autosomal Recessive 4, With Enlarged Vestibular Aqueduct; Pendred Syndrome; Seizures, Sensorineural Deafness, Ataxia, Mental Retardation, And Electrolyte Imbalance
Product References and Citations for KCNJ10 recombinant protein
Cloning and characterization of two K+ inward rectifier (Kir) 1.1 potassium channel homologs from human kidney (Kir1.2 and Kir1.3) .Shuck M.E., Piser T.M., Bock J.H., Slightom J.L., Lee K.S., Bienkowski M.J.J. Biol. Chem. 272:586-593(1997) Co-expression of human Kir3 subunits can yield channels with different functional properties.Schoots O., Wilson J.M., Ethier N., Bigras E., Hebert T.E., Van Tol H.H.M.Cell. Signal. 11:871-883(1999) The DNA sequence and biological annotation of human chromosome 1.Gregory S.G., Barlow K.F., McLay K.E., Kaul R., Swarbreck D., Dunham A., Scott C.E., Howe K.L., Woodfine K., Spencer C.C.A., Jones M.C., Gillson C., Searle S., Zhou Y., Kokocinski F., McDonald L., Evans R., Phillips K., Atkinson A., Cooper R., Jones C., Hall R.E., Andrews T.D., Lloyd C., Ainscough R., Almeida J.P., Ambrose K.D., Anderson F., Andrew R.W., Ashwell R.I.S., Aubin K., Babbage A.K., Bagguley C.L., Bailey J., Beasley H., Bethel G., Bird C.P., Bray-Allen S., Brown J.Y., Brown A.J., Buckley D., Burton J., Bye J., Carder C., Chapman J.C., Clark S.Y., Clarke G., Clee C., Cobley V., Collier R.E., Corby N., Coville G.J., Davies J., Deadman R., Dunn M., Earthrowl M., Ellington A.G., Errington H., Frankish A., Frankland J., French L., Garner P., Garnett J., Gay L., Ghori M.R.J., Gibson R., Gilby L.M., Gillett W., Glithero R.J., Grafham D.V., Griffiths C., Griffiths-Jones S., Grocock R., Hammond S., Harrison E.S.I., Hart E., Haugen E., Heath P.D., Holmes S., Holt K., Howden P.J., Hunt A.R., Hunt S.E., Hunter G., Isherwood J., James R., Johnson C., Johnson D., Joy A., Kay M., Kershaw J.K., Kibukawa M., Kimberley A.M., King A., Knights A.J., Lad H., Laird G., Lawlor S., Leongamornlert D.A., Lloyd D.M., Loveland J., Lovell J., Lush M.J., Lyne R., Martin S., Mashreghi-Mohammadi M., Matthews L., Matthews N.S.W., McLaren S., Milne S., Mistry S., Moore M.J.F., Nickerson T., O'Dell C.N., Oliver K., Palmeiri A., Palmer S.A., Parker A., Patel D., Pearce A.V., Peck A.I., Pelan S., Phelps K., Phillimore B.J., Plumb R., Rajan J., Raymond C., Rouse G., Saenphimmachak C., Sehra H.K., Sheridan E., Shownkeen R., Sims S., Skuce C.D., Smith M., Steward C., Subramanian S., Sycamore N., Tracey A., Tromans A., Van Helmond Z., Wall M., Wallis J.M., White S., Whitehead S.L., Wilkinson J.E., Willey D.L., Williams H., Wilming L., Wray P.W., Wu Z., Coulson A., Vaudin M., Sulston J.E., Durbin R.M., Hubbard T., Wooster R., Dunham I., Carter N.P., McVean G., Ross M.T., Harrow J., Olson M.V., Beck S., Rogers J., Bentley D.R.Nature 441:315-321(2006)

Research Articles on KCNJ10
1. anti-KIR4.1 antibody levels differed in multiple sclerosis patients during relapse and remission; as such, they may represent a marker of disease exacerbation
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Precautions
All of MyBioSource's Products are for scientific laboratory research purposes and are not for diagnostic, therapeutics, prophylactic or in vivo use. Through your purchase, you expressly represent and warrant to MyBioSource that you will properly test and use any Products purchased from MyBioSource in accordance with industry standards. MyBioSource and its authorized distributors reserve the right to refuse to process any order where we reasonably believe that the intended use will fall outside of our acceptable guidelines.
Disclaimer
While every efforts were made to ensure the accuracy of the information provided in this datasheet, MyBioSource will not be liable for any omissions or errors contained herein. MyBioSource reserves the right to make changes to this datasheet at any time without prior notice.

It is the responsibility of the customer to report product performance issues to MyBioSource within 30 days of receipt of the product. Please visit our Terms & Conditions page for more information.
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