Toll-free:1-888-852-8623

All categories

  • All categories
  • Flow Cytometry Antibodies
  • ELISA Kits
  • MACS Cell Isolation
  • Antibodies and Reagents
  • Apoptosis and Cell Health Detection
  • Metabolism Assays
  • Immunoassays
  • Cell Identification Kits
  • Proteins and Peptides
  • Cell Culture
Please enter the item number/product keyword!
Keyword cannot be empty !
INSERT SYMBOLS:
  • α
  • β
  • γ
  • δ
  • ε
  • ζ
  • η
  • θ
  • κ
  • μ
  • ω
  • σ
  • τ
  • λ
  • ⅩⅢ
  • ⅩⅢ
  • ⅩⅣ
  • ⅩⅤ
  • ⅩⅦ
  • ⅩⅧ
  • UP ↑
All Size Price Qty
200μL $ 530.00
120μL $ 320.00
60μL $ 200.00
Add to cart

For research use only.

Verified Samples Verified Samples in WB: various cell lines
Verified Samples in IF: L929
Dilution WB 1:500-1:2000,  IF 1:50-1:200
Isotype IgG
Host Rabbit
Reactivity Human,  Mouse
Applications WB,  IF
Clonality Polyclonal
Immunogen A synthetic peptide of human ATP5G2
Abbre ATP5G2
Synonyms ATP5A,  ATP5G2
Swissprot
Calculated MW 14 kDa
Observed MW 16 kDa
The actual band is not consistent with the expectation.

Western blotting is a method for detecting a certain protein in a complex sample based on the specific binding of antigen and antibody. Different proteins can be divided into bands based on different mobility rates. The mobility is affected by many factors, which may cause the observed band size to be inconsistent with the expected size. The common factors include:

1. Post-translational modifications: For example, modifications such as glycosylation, phosphorylation, methylation, and acetylation will increase the molecular weight of the protein.

2. Splicing variants: Different expression patterns of various mRNA splicing bodies may produce proteins of different sizes.

3. Post-translational cleavage: Many proteins are first synthesized into precursor proteins and then cleaved to form active forms, such as COL1A1.

4. Relative charge: the composition of amino acids (the proportion of charged amino acids and uncharged amino acids).

5. Formation of multimers: For example, in protein dimer, strong interactions between proteins can cause the bands to be larger. However, the use of reducing conditions can usually avoid the formation of multimers.

If a protein in a sample has different modified forms at the same time, multiple bands may be detected on the membrane.

Cellular Localization Mitochondrial inner membrane, mitochondrial outer membrane, mitochondrial proton-transporting ATP synthase complex, mitochondrial proton-transp.
Concentration 1 mg/mL
Buffer Phosphate buffered solution, pH 7.4, containing 0.05% stabilizer and 50% glycerol.
Purification Method Affinity purification
Research Areas Signal Transduction
Conjugation Unconjugated
Storage Store at -20°C Valid for 12 months. Avoid freeze / thaw cycles.
Shipping The product is shipped with ice pack,upon receipt,store it immediately at the temperature recommended.
background This gene encodes a subunit of mitochondrial ATP synthase. Mitochondrial ATP synthase catalyzes ATP synthesis, utilizing an electrochemical gradient of protons across the inner membrane during oxidative phosphorylation. ATP synthase is composed of two linked multi-subunit complexes: the soluble catalytic core, F1, and the membrane-spanning component, Fo, comprising the proton channel. The catalytic portion of mitochondrial ATP synthase consists of 5 different subunits (alpha, beta, gamma, delta, and epsilon) assembled with a stoichiometry of 3 alpha, 3 beta, and single representatives of the gamma, delta, and epsilon subunits. The proton channel likely has nine subunits (a, b, c, d, e, f, g, F6 and 8). There are three separate genes which encode subunit c of the proton channel and they specify precursors with different import sequences but identical mature proteins. The protein encoded by this gene is one of three precursors of subunit c. This gene has multiple pseudogenes.
Other Clones

{{antibodyDetailsPage.numTotal}} Results

Other Formats

{{formatDetailsPage.numTotal}} Results

Unconjugated

  • IF:{{item.impact}}

    Journal:{{item.journal}} ({{item.year}})

    DOI:{{item.doi}}

    Reactivity:{{item.species}}

    Sample Type:{{item.organization}}

  • Q{{(FAQpage.currentPage - 1)*pageSize+index+1}}:{{item.name}}