Human KCAB1-Strep full length protein-synthetic nanodisc

Human KCAB1-Strep full length protein-synthetic nanodisc
Item number Size Datasheet Manual SDS Delivery time Quantity Price
DIM-FLP120651.10 10 µg - -

7 - 16 business days*

1,185.00€
DIM-FLP120651.50 50 µg - -

7 - 16 business days*

5,793.00€
DIM-FLP120651.100 100 µg - -

7 - 16 business days*

10,534.00€
 
Potassium channels represent the most complex class of voltage-gated ion channels from both... more
Product information "Human KCAB1-Strep full length protein-synthetic nanodisc"
Potassium channels represent the most complex class of voltage-gated ion channels from both functional and structural standpoints. Their diverse functions include regulating neurotransmitter release, heart rate, insulin secretion, neuronal excitability, epithelial electrolyte transport, smooth muscle contraction, and cell volume. Four sequence-related potassium channel genes - shaker, shaw, shab, and shal - have been identified in Drosophila, and each has been shown to have human homolog(s). This gene encodes a member of the potassium channel, voltage-gated, shaker-related subfamily. This member includes distinct isoforms which are encoded by alternatively spliced transcript variants of this gene. Some of these isoforms are beta subunits, which form heteromultimeric complexes with alpha subunits and modulate the activity of the pore-forming alpha subunits. [provided by RefSeq, Apr 2015]. Human KCAB1-Strep full length protein-synthetic nanodisc. Protein function: Cytoplasmic potassium channel subunit that modulates the characteristics of the channel-forming alpha-subunits (PubMed:7499366, PubMed:7603988, PubMed:17156368,PubMed:17540341, PubMed:19713757). Modulates action potentials via its effect on the pore-forming alpha subunits. Promotes expression of the pore-forming alpha subunits at the cell membrane, and thereby increases channel activity. Mediates closure of delayed rectifier potassium channels by physically obstructing the pore via its N-terminal domain and increases the speed of channel closure for other family members (PubMed:9763623). Promotes the closure of KCNA1, KCNA2 and KCNA5 channels (PubMed:7499366, PubMed:7890032, PubMed:7603988, PubMed:7649300, PubMed:8938711, PubMed:12077175, PubMed:12130714, PubMed:15361858, PubMed:17540341, PubMed:19713757). Accelerates KCNA4 channel closure (PubMed:7890032, PubMed:7649300, PubMed:7890764, PubMed:9763623). Accelerates the closure of heteromeric channels formed by KCNA1 and KCNA4 (PubMed:17156368). Accelerates the closure of heteromeric channels formed by KCNA2, KCNA5 and KCNA6. Isoform KvB1.2 has no effect on KCNA1, KCNA2 or KCNB1 (PubMed:7890032, PubMed:7890764). Enhances KCNB1 and KCNB2 channel activity. Binds NADPH, this is required for efficient down- regulation of potassium channel activity (PubMed:17540341). Has NADPH- dependent aldoketoreductase activity. Oxidation of the bound NADPH strongly decreases N-type inactivation of potassium channel activity. [The UniProt Consortium]
Keywords: KCNA1B, KCNAB1, Kv-beta-1, K(+) channel subunit beta-1, Voltage-gated potassium channel subunit beta-1
Supplier: DIMA
Supplier-Nr: FLP120651

Properties

Application: Full length transmembrane protein, FA, ELISA, screening, immunization, cell-based assays, crystallization
Conjugate: No
Host: Human cells
Species reactivity: human
MW: 46.6 kD
Format: Lyophilized

Handling & Safety

Storage: -20°C (avoid repeat freezing and thawing cycles)
Shipping: +20°C (International: +20°C)
Caution
Our products are for laboratory research use only: Not for administration to humans!
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