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ATP6V0E2 antibody (C-Term)

This Rabbit Polyclonal antibody specifically detects ATP6V0E2 in WB. It exhibits reactivity toward Human, Mouse and Rat.
Catalog No. ABIN7834665
$553.85
Plus shipping costs $50.00
200 μL
Shipping to: United States
Delivery in 1 to 2 Business Days

Quick Overview for ATP6V0E2 antibody (C-Term) (ABIN7834665)

Target

See all ATP6V0E2 Antibodies
ATP6V0E2 (ATPase, H+ Transporting V0 Subunit E2 (ATP6V0E2))

Reactivity

  • 4
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 2
  • 1
  • 1
Human, Mouse, Rat

Host

  • 4
Rabbit

Clonality

  • 4
Polyclonal

Conjugate

  • 4
This ATP6V0E2 antibody is un-conjugated

Application

Western Blotting (WB)
  • Binding Specificity

    • 1
    • 1
    • 1
    • 1
    C-Term

    Purpose

    Rabbit polyclonal antibody to ATP6V0E2

    Specificity

    Recognizes endogenous levels of ATP6V0E2 protein

    Purification

    The antibody was purified by immunogen affinity chromatography.

    Immunogen

    KLH-conjugated synthetic peptide encompassing a sequence within the C-terminal region of human ATP6V0E2. The exact sequence is proprietary.
  • Application Notes

    WB (1/500 - 1/1000)

    Restrictions

    For Research Use only
  • Format

    Liquid

    Buffer

    Liquid in 0.42 % Potassium phosphate, 0.87 % Sodium chloride, pH 7.3, 30 % glycerol, and 0.01 % sodium azide.

    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

    Shipped at 4°C. Upon delivery aliquot and store at -20°C for one year. Avoid freeze/thaw cycles.
  • Target

    ATP6V0E2 (ATPase, H+ Transporting V0 Subunit E2 (ATP6V0E2))

    Alternative Name

    ATP6V0E2

    Background

    ATP6V0E2L, C7orf32, V-type proton ATPase subunit e 2, V-ATPase subunit e 2, Lysosomal 9 kDa H(+)-transporting ATPase V0 subunit e2, Vacuolar proton pump subunit e 2

    Gene ID

    155066, 76252, 436582

    UniProt

    Q8NHE4

    Pathways

    Transition Metal Ion Homeostasis, Proton Transport
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