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ATP5A1 antibody (Internal Region)

ATP5A1 Reactivity: Human, Mouse, Rat WB, ELISA, IF, ICC Host: Rabbit Polyclonal unconjugated
Catalog No. ABIN6258538
  • Target See all ATP5A1 Antibodies
    ATP5A1 (ATP Synthase, H+ Transporting, Mitochondrial F1 Complex, alpha Subunit 1, Cardiac Muscle (ATP5A1))
    Binding Specificity
    • 9
    • 7
    • 4
    • 4
    • 4
    • 2
    • 2
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    Internal Region
    Reactivity
    • 64
    • 33
    • 18
    • 2
    • 2
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    • 1
    Human, Mouse, Rat
    Host
    • 57
    • 6
    • 2
    Rabbit
    Clonality
    • 49
    • 16
    Polyclonal
    Conjugate
    • 28
    • 7
    • 4
    • 4
    • 3
    • 3
    • 3
    • 3
    • 3
    • 3
    • 2
    • 2
    This ATP5A1 antibody is un-conjugated
    Application
    • 33
    • 28
    • 27
    • 7
    • 6
    • 5
    • 4
    • 2
    • 1
    • 1
    Western Blotting (WB), ELISA, Immunofluorescence (IF), Immunocytochemistry (ICC)
    Specificity
    ATP5A1 Antibody detects endogenous levels of total ATP5A1.
    Predicted Reactivity
    Pig,Bovine,Chicken,Xenopus
    Purification
    The antiserum was purified by peptide affinity chromatography using SulfoLinkTM Coupling Resin (Thermo Fisher Scientific).
    Immunogen
    A synthesized peptide derived from human ATP5A1, corresponding to a region within the internal amino acids.
    Isotype
    IgG
    Top Product
    Discover our top product ATP5A1 Primary Antibody
  • Application Notes
    WB 1:500-1:1000, IF/ICC 1:100-1:500, ELISA(peptide) 1:20000-1:40000
    Restrictions
    For Research Use only
  • Format
    Liquid
    Concentration
    1 mg/mL
    Buffer
    Rabbit IgG in phosphate buffered saline , pH 7.4, 150 mM NaCl, 0.02 % sodium azide and 50 % glycerol.
    Preservative
    Sodium azide
    Precaution of Use
    This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
    Storage
    -20 °C
    Storage Comment
    Store at -20 °C. Stable for 12 months from date of receipt.
    Expiry Date
    12 months
  • Target
    ATP5A1 (ATP Synthase, H+ Transporting, Mitochondrial F1 Complex, alpha Subunit 1, Cardiac Muscle (ATP5A1))
    Alternative Name
    ATP5A1 (ATP5A1 Products)
    Synonyms
    atp5a antibody, MGC108350 antibody, AI035633 antibody, AL022851 antibody, AL023067 antibody, Atpm antibody, D18Ertd206e antibody, Mom2 antibody, ATP5A antibody, ATP5AL2 antibody, ATPM antibody, MC5DN4 antibody, MOM2 antibody, OMR antibody, ORM antibody, hATP1 antibody, zgc:154103 antibody, ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit 1, cardiac muscle L homeolog antibody, ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit 1, cardiac muscle antibody, ATP synthase subunit alpha, mitochondrial antibody, ATP synthase, H+ transporting, mitochondrial F1 complex, alpha subunit 1 antibody, atp5a1.L antibody, ATP5A1 antibody, atp5a1 antibody, LOC100395383 antibody, Atp5a1 antibody
    Background

    Description: Mitochondrial membrane ATP synthase (F1F0 ATP synthase or Complex V) produces ATP from ADP in the presence of a proton gradient across the membrane which is generated by electron transport complexes of the respiratory chain. F-type ATPases consist of two structural domains, F1 - containing the extramembraneous catalytic core, and F0 - containing the membrane proton channel, linked together by a central stalk and a peripheral stalk. During catalysis, ATP synthesis in the catalytic domain of F1 is coupled via a rotary mechanism of the central stalk subunits to proton translocation. Subunits alpha and beta form the catalytic core in F1. Rotation of the central stalk against the surrounding alpha3beta3 subunits leads to hydrolysis of ATP in three separate catalytic sites on the beta subunits. Subunit alpha does not bear the catalytic high-affinity ATP-binding sites (By similarity).

    Gene: ATP5A1

    Molecular Weight
    60 kDa
    Gene ID
    498
    UniProt
    P25705
    Pathways
    Proton Transport, Ribonucleoside Biosynthetic Process
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