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Antikörper
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anti-Calcium Channel, Voltage-Dependent, gamma Subunit 8 (CACNG8) (internal) Antik...
Calcium Channel, Voltage-Dependent, gamma Subunit 8 (CACNG8) (internal) Antikörper
| Antigen |
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| Synonyme |
MGC146001 |
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Epitope
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| Klonalität |
Polyklonal |
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Wirt
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Applikation
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| Produktnummer |
ABIN350172 |
| Menge |
100 µl (Varianten) |
| Preis |
317,95 € Zzgl. Versandkosten €20,00 und MWSt
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| Lieferung nach |
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| Verfügbarkeit |
Lieferung in 7 bis 10 Werktagen |
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Weitere Bezeichnung
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CACNG8 (internal region)
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Swiss-Prot
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Q8WXS5
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Immunogen
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A synthetic peptide from the internal region of human CACNG8 conjugated to an immunogenic carrier protein was used as the immunogen. The antigen is homologous in mouse and rat.
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Format
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Lyophilized
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Beschreibung
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FUNCTION: Thought to stabilize the calcium channel in an inactivated (closed) state. Subcellular location: Membrane; Single-pass type I membrane protein Also known as: Voltage-dependent calcium channel gamma-8 subunit, Neuronal voltage-gated calcium channel gamma-8 subunit.
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Spezifität
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Appears to be specific for CACNG8.
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Applikationshinweise
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IHC, WB. A dilution of 1: 300 to 1: 2000 is recommended. The optimal dilution should be determined by the end user. Not yet tested in other applications.
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Reinheit
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whole serum
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Lagerung
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Maintain the lyophilised/reconstituted antibodies frozen at -20°C for long term storage and refrigerated at 2-8°C for a shorter term. When reconstituting, glycerol (1:1) may be added for an additional stability. Avoid freeze and thaw cycles.
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Beschränkungen
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Nur für Forschungszwecke einsetzbar
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Publikationen
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Burgess, Gefrides, Foreman et al.: "A cluster of three novel Ca2+ channel gamma subunit genes on chromosome 19q13.4: evolution and expression profile of the gamma subunit gene family." in: Genomics, Vol. 71, Issue 3, pp. 339-50, 2001 (PubMed).
Chu, Robertson, Best: "Calcium channel gamma subunits provide insights into the evolution of this gene family." in: Gene, Vol. 280, Issue 1-2, pp. 37-48, 2001 (PubMed).
Munton, Tweedie-Cullen, Livingstone-Zatchej et al.: "Qualitative and quantitative analyses of protein phosphorylation in naive and stimulated mouse synaptosomal preparations." in: Molecular & cellular proteomics : MCP, Vol. 6, Issue 2, pp. 283-93, 2007 (PubMed).
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