ATP6V0C Antikörper (C-Term)
Kurzübersicht für ATP6V0C Antikörper (C-Term) (ABIN654427)
Target
Alle ATP6V0C Antikörper anzeigenReaktivität
Wirt
Klonalität
Konjugat
Applikation
Klon
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Bindungsspezifität
- AA 100-126, C-Term
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Homologie
- E, B, D, Rat, Sh
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Aufreinigung
- This antibody is purified through a protein A column, followed by peptide affinity purification.
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Immunogen
- This ATP6V0C antibody is generated from rabbits immunized with a KLH conjugated synthetic peptide between 100-126 amino acids from the C-terminal region of human ATP6V0C.
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Isotyp
- Ig Fraction
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Applikationshinweise
- WB: 1:1000
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Beschränkungen
- Nur für Forschungszwecke einsetzbar
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Format
- Liquid
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Buffer
- Purified polyclonal antibody supplied in PBS with 0.09 % (W/V) sodium azide.
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Konservierungsmittel
- Sodium azide
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Vorsichtsmaßnahmen
- This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
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Lagerung
- 4 °C,-20 °C
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Informationen zur Lagerung
- Maintain refrigerated at 2-8 °C for up to 6 months. For long term storage store at -20 °C in small aliquots to prevent freeze-thaw cycles.
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Haltbarkeit
- 6 months
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- ATP6V0C (ATPase, H+ Transporting, Lysosomal 16kDa, V0 Subunit C (ATP6V0C))
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Andere Bezeichnung
- ATP6V0C
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Hintergrund
- ATP6V0C is a component of vacuolar ATPase (V-ATPase), a multisubunit enzyme that mediates acidification of eukaryotic intracellular organelles. V-ATPase dependent organelle acidification is necessary for such intracellular processes as protein sorting, zymogen activation, receptor-mediated endocytosis, and synaptic vesicle proton gradient generation. V-ATPase is composed of a cytosolic V1 domain and a transmembrane V0 domain. The V1 domain consists of three A and three B subunits, two G subunits plus the C, D, E, F, and H subunits. The V1 domain contains the ATP catalytic site. The V0 domain consists of five different subunits: a, c, c', c', and d. ATP6V0C encodes the V0 subunit c.
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Molekulargewicht
- 15736
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Gen-ID
- 527
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NCBI Accession
- NP_001185498, NP_001685
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UniProt
- P27449
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Pathways
- Transition Metal Ion Homeostasis, Proton Transport
Target
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