SMS Antikörper (AA 245-350) (Biotin)
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- Target Alle SMS Antikörper anzeigen
- SMS (Spermine Synthase, SMS (SMS))
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Bindungsspezifität
- AA 245-350
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Reaktivität
- Maus
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Wirt
- Kaninchen
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Klonalität
- Polyklonal
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Konjugat
- Dieser SMS Antikörper ist konjugiert mit Biotin
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Applikation
- Western Blotting (WB), ELISA, Immunohistochemistry (Paraffin-embedded Sections) (IHC (p)), Immunohistochemistry (Frozen Sections) (IHC (fro))
- Kreuzreaktivität
- Maus
- Homologie
- Human,Rat,Dog,Cow,Horse,Rabbit
- Aufreinigung
- Purified by Protein A.
- Immunogen
- KLH conjugated synthetic peptide derived from human Spermine synthase
- Isotyp
- IgG
- Top Product
- Discover our top product SMS Primärantikörper
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- Applikationshinweise
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WB 1:300-5000
IHC-P 1:200-400
IHC-F 1:100-500 - Beschränkungen
- Nur für Forschungszwecke einsetzbar
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- Format
- Liquid
- Konzentration
- 1 μg/μL
- Buffer
- Aqueous buffered solution containing 0.01M TBS ( pH 7.4) with 1 % BSA, 0.03 % Proclin300 and 50 % Glycerol.
- Konservierungsmittel
- ProClin
- Vorsichtsmaßnahmen
- This product contains ProClin: a POISONOUS AND HAZARDOUS SUBSTANCE, which should be handled by trained staff only.
- Lagerung
- -20 °C
- Informationen zur Lagerung
- Store at -20°C for 12 months.
- Haltbarkeit
- 12 months
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- Target
- SMS (Spermine Synthase, SMS (SMS))
- Andere Bezeichnung
- Spermine synthase (SMS Produkte)
- Synonyme
- MRSR antikoerper, SPMSY antikoerper, SRS antikoerper, SpS antikoerper, AI427066 antikoerper, Gy antikoerper, SpmST antikoerper, gyro antikoerper, spermine synthase antikoerper, SMS antikoerper, Sms antikoerper
- Hintergrund
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Synonyms: MRSR, SMS, Snyder Robinson X linked mental retardation syndrome, Spermidine aminopropyltransferase, Spermine synthase, SPMSY, SpS, SPSY_HUMAN, SRS.
Background: Spermine synthase catalyzes the production of spermine from spermidine. Spermine, a polyamine ubiquitously present in most organisms, is essential for normal cell growth and differentiation. Because absence of spermine increases sensitivity of cells to anti-tumor agents, spermine synthase (and other polyamine biosynthesis) is an attractive target for anti-neoplastic therapy.
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