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KV3.1 (C-13) 抗体: sc-23319

 |  データシート
  • goat polyclonal IgG, 200 µg/ml
  • epitope mapping near the C-terminus of KV3.1 of human origin
  • recommended for detection of KV3.1 of mouse, rat and human origin by WB, IF and ELISA; also reactive with additional species, including equine, canine, bovine, porcine and avian
  • blocking peptide, sc-23319 P
 
Additional KV 抗体 ...
 
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WB   IF   siRNA  
 
Species 遺伝子名 Gene ID Chromosome Location Isoform (mRNA) Accession # Protein Accession # OMIM™ Number
ヒト KCNC1 3746 11p15.1 NM_004976 P48547
176258
マウス Kcnc1 16502 7 B4 P15388
N/A
 
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 注文情報
製品名カタログ #Unit価格数量追加Favorites
KV3.1 (C-13) sc-23319 200 µg/ml $279
KV3.1 (C-13) P sc-23319 P
(peptide)
100 µg/0.5 ml $61
 siRNA遺伝子サイレンサー (click product name for more information)
製品名カタログ #Unit価格数量追加Favorites
KV3.1 siRNA (h) sc-42720 10 µM $258
KV3.1 siRNA (m) sc-42721 10 µM $258
KV3.1 (h)-PR sc-42720-PR 10 µM $23
KV3.1 (m)-PR sc-42721-PR 10 µM $23
 shRNAプラスミド (click product name for more information)
製品名カタログ #Unit価格数量追加Favorites
KV3.1 shRNA Plasmid (h) sc-42720-SH 20 µg $520
KV3.1 shRNA Plasmid (m) sc-42721-SH 20 µg $520
 shRNA レンチウイルス粒子 (click product name for more information)
製品名カタログ #Unit価格数量追加Favorites
KV3.1 shRNA (h) Lentiviral Particles sc-42720-V 200 µl $625
KV3.1 shRNA (m) Lentiviral Particles sc-42721-V 200 µl $625

KV3.1 Background Information
The human voltage-gated potassium (KV) channel KV3.1 gene maps to chromosome 11p15 and encodes a protein that resembles Drosophila Shaw subfamily channel types. KV channels regulate neurotransmitter release, heart rate, insulin secretion, neuronal excitability, epithelial electrolyte transport, smooth muscle contraction, and cell volume. KV channels are multimers that contain channel activity-dependent alpha subunits and modulatory gamma subunits. Neuronal populations in the CNS coexpressing KV3.1 and KV3.3 influence fast repolarization of action potentials and enable neurons to fire repetitively at high frequencies. KV3 genes produce multiple splice variants in the 3' ends of respective transcript, which may influence normal spatial ion permeability of excitable membranes in the brain.