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Anti-SCN3B
Anti-SCN3B

Artikelnummer: ATA-HPA041707.100

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Schlagworte: Anti-SCN3B, Anti-KIAA1158, Anti-Sodium channel subunit beta-3
Anwendung: ICC
Wirt: Rabbit
Spezies-Reaktivität: human
ab 246,00 €
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SCN3B Protein, Human, Recombinant (His)
SCN3B Protein, Human, Recombinant (His)

Artikelnummer: TGM-TMPY-02976-100ug

Description: SCN3B Protein, Human, Recombinant (His) is expressed in HEK293 mammalian cells with His tag. The predicted molecular weight is 17.2 kDa and the accession number is Q9NY72.
Schlagworte: ATFB16, HSA243396, BRGDA7, sodium channel, voltage gated, type III beta subunit, sodium channel, voltage gated, type III...
MW: 17.2 kD
768,00 €
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SCN3B Protein, Human, Recombinant (hFc)
SCN3B Protein, Human, Recombinant (hFc)

Artikelnummer: TGM-TMPY-02722-100ug

Description: SCN3B Protein, Human, Recombinant (hFc) is expressed in HEK293 mammalian cells with hFc tag. The predicted molecular weight is 42.5 kDa and the accession number is Q9NY72.
Schlagworte: SCNB3, BRGDA7, sodium channel, voltage gated, type III beta subunit, sodium channel, voltage gated, type III beta subunit,...
MW: 42.5 kD
768,00 €
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Nanodisc Human SCN3B-Strep Protein
Nanodisc Human SCN3B-Strep Protein

Artikelnummer: G-HDFP1356.10

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Schlagworte: SCN3B, KIAA1158, Sodium channel subunit beta-3
Exprimiert in: Human cells
Ursprungsart: human
1.605,00 €
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Nanodisc Human SCN3B Protein
Nanodisc Human SCN3B Protein

Artikelnummer: G-HDFP641.10

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Schlagworte: SCN3B, KIAA1158, Sodium channel subunit beta-3
Exprimiert in: Human cells
Ursprungsart: human
1.693,00 €
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SCN3B, Recombinant, Human, aa23-159, His-Tag (Sodium Channel Subunit beta-3, ATFB16, BRGDA7, HSA2433
SCN3B, Recombinant, Human, aa23-159, His-Tag (Sodium...

Artikelnummer: 377961.50

SCN3B, also known as sodium channel subunit beta-3, is an additional auxiliary subunit of the voltage-sensitive sodium channel that modulates channel gating with distinct kinetics. It was detected in brain, heart, kidney, lung, pancreas and skeletal muscle. It is expressed in adult mammalian skeletal muscle and can...
Schlagworte: SCN3B, KIAA1158, Sodium channel subunit beta-3
MW: 16,8
754,00 €
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SCN3B PrEST Antigen
SCN3B PrEST Antigen

Artikelnummer: ATA-APrEST94100.100

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Schlagworte: SCN3B, KIAA1158, Sodium channel subunit beta-3
Anwendung: Control antigen
Exprimiert in: E.coli
Ursprungsart: human
264,00 €
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Anti-SCN3B
Anti-SCN3B

Artikelnummer: G-CAB10316.20

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Schlagworte: Anti-SCN3B, Anti-KIAA1158, Anti-Sodium channel subunit beta-3
Anwendung: WB
Wirt: Rabbit
Spezies-Reaktivität: human, mouse
103,00 €
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Recombinant Human SCN3B Protein (His tag)
Recombinant Human SCN3B Protein (His tag)

Artikelnummer: E-PKSH030618.100

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Ursprungsart: human
924,00 €
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Recombinant Human SCN3B Protein (Fc tag)
Recombinant Human SCN3B Protein (Fc tag)

Artikelnummer: E-PKSH030619.100

Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its association with NFASC may target the sodium channels to the nodes of Ranvier of developing axons and retain these channels at the nodes in...
Ursprungsart: human
924,00 €
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Recombinant Human SCN3B Protein (His Tag) (RPES4915)
Recombinant Human SCN3B Protein (His Tag) (RPES4915)

Artikelnummer: G-RPES4915.100

Human SCN3B Recombinant Protein (RPES4915) is a highly pure recombinant protein developed by Assay Genie for use in a range of applications Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its...
Schlagworte: SCN3B, KIAA1158, Sodium channel subunit beta-3
Exprimiert in: Human cells
Ursprungsart: human
1.471,00 €
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Recombinant Human SCN3B Protein (Fc Tag) (RPES4936)
Recombinant Human SCN3B Protein (Fc Tag) (RPES4936)

Artikelnummer: G-RPES4936.100

Human SCN3B Recombinant Protein (RPES4936) is a highly pure recombinant protein developed by Assay Genie for use in a range of applications Protein function: Modulates channel gating kinetics. Causes unique persistent sodium currents. Inactivates the sodium channel opening more slowly than the subunit beta-1. Its...
Schlagworte: SCN3B, KIAA1158, Sodium channel subunit beta-3
Exprimiert in: Human cells
Ursprungsart: human
1.471,00 €
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