- Search results for GeneID 6328
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7 products were found matching "GeneID 6328"!
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Item number: ABS-PP-4564-L.100
Protein function: Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, forms a sodium- selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient...
| Keywords: | Sodium channel protein type 3 subunit alpha, Sodium channel protein brain III subunit alpha, Sodium channel protein type... |
| Expressed in: | E.coli |
| Origin: | human |
| MW: | 27.5 kD |
From 115.00€
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Item number: ELK-ES10278.100
Voltage-gated sodium channels are transmembrane glycoprotein complexes composed of a large alpha subunit with 24 transmembrane domains and one or more regulatory beta subunits. They are responsible for the generation and propagation of action potentials in neurons and muscle. This gene encodes one member of the...
| Keywords: | Anti-SCN3A, Anti-KIAA1356, Anti-Voltage-gated sodium channel subtype III, Anti-Sodium channel protein type 3 subunit... |
| Application: | WB, ELISA |
| Host: | Rabbit |
| Species reactivity: | human, rat, mouse, |
From 173.00€
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Item number: CSB-PA885761ESR1HU.100
Host Species: Rabbit. Isotype: IgG. Buffer: PBS with 0.02% sodium azide, 50% glycerol, pH7.3. Storage: Upon receipt, store at -20°C or -80°C. Avoid repeated freeze. Purification Method: Antigen Affinity Purified. Target Name: SCN3A. Antigen Species: Human
| Keywords: | Anti-SCN3A, Anti-KIAA1356, Anti-Voltage-gated sodium channel subtype III, Anti-Sodium channel protein type 3 subunit... |
| Application: | ELISA, IHC |
| Host: | Rabbit |
| Species reactivity: | human |
From 167.00€
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Item number: ABS-PP-4564.100
Protein function: Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, forms a sodium- selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient...
| Keywords: | Sodium channel protein type 3 subunit alpha, Sodium channel protein brain III subunit alpha, Sodium channel protein type... |
| Expressed in: | E.coli |
| Origin: | human |
| MW: | 27.5 kD |
From 90.00€
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Item number: DIM-FLP120724.10
Voltage-gated sodium channels are transmembrane glycoprotein complexes composed of a large alpha subunit with 24 transmembrane domains and one or more regulatory beta subunits. They are responsible for the generation and propagation of action potentials in neurons and muscle. This gene encodes one member of the...
| Keywords: | SCN3A, KIAA1356, Voltage-gated sodium channel subtype III, Sodium channel protein type 3 subunit alpha, Sodium channel... |
| Application: | Full length transmembrane protein, FA, ELISA, screening, immunization, cell-based assays, crystallization |
| Expressed in: | Human cells |
| Origin: | human |
| MW: | 226.3 kD |
From 1,185.00€
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Item number: G-HDFP1347.10
Protein function: Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, forms a sodium- selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient...
| Keywords: | SCN3A, KIAA1356, Voltage-gated sodium channel subtype III, Sodium channel protein type 3 subunit alpha, Sodium channel... |
| Expressed in: | Human cells |
| Origin: | human |
1,605.00€
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Item number: G-HDFP632.10
Protein function: Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, forms a sodium- selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient...
| Keywords: | SCN3A, KIAA1356, Voltage-gated sodium channel subtype III, Sodium channel protein type 3 subunit alpha, Sodium channel... |
| Expressed in: | Human cells |
| Origin: | human |
1,693.00€
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