ATP5ME Mouse Monoclonal Antibody [Clone ID: OTI1G4]

CAT#: CF811806

Carrier-free (BSA/glycerol-free) ATP5I mouse monoclonal antibody,clone OTI1G4

Formulation: Standard Carrier Free


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USD 465.00

In Stock*

Size
    • 100 ug

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Specifications

Product Data
Clone Name OTI1G4
Applications IHC, WB
Recommended Dilution WB 1:2000, IHC 1:500
Reactivities Human
Host Mouse
Isotype IgG1
Clonality Monoclonal
Immunogen Full length human recombinant protein of human ATP5I (NP_009031) produced in E.coli.
Formulation Lyophilized powder (original buffer 1X PBS, pH 7.3, 8% trehalose)
Reconstitution Method For reconstitution, we recommend adding 100uL distilled water to a final antibody concentration of about 1 mg/mL. To use this carrier-free antibody for conjugation experiment, we strongly recommend performing another round of desalting process. (OriGene recommends Zeba Spin Desalting Columns, 7KMWCO from Thermo Scientific)
Purification Purified from mouse ascites fluids or tissue culture supernatant by affinity chromatography (protein A/G)
Conjugation Unconjugated
Storage Store at -20°C as received.
Stability Stable for 12 months from date of receipt.
Predicted Protein Size 7.8 kDa
Gene Name Homo sapiens ATP synthase membrane subunit e (ATP5ME), transcript variant 1, mRNA.
Background Mitochondrial ATP synthase catalyzes ATP synthesis, utilizing an electrochemical gradient of protons across the inner membrane during oxidative phosphorylation. It is composed of two linked multi-subunit complexes: the soluble catalytic core, F1, and the membrane-spanning component, Fo, which comprises the proton channel. The F1 complex consists of 5 different subunits (alpha, beta, gamma, delta, and epsilon) assembled in a ratio of 3 alpha, 3 beta, and a single representative of the other 3. The Fo seems to have nine subunits (a, b, c, d, e, f, g, F6 and 8). This gene encodes the e subunit of the Fo complex. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Jun 2010]
Synonyms ATP5K
Reference Data
Protein Pathways Metabolic pathways, Oxidative phosphorylation

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