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NQO2 Antibody (OAPA00356)

5ug
$100.00
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Gene Symbol:
NQO2
NCBI Gene Id:
4835
Protein Name:
Ribosyldihydronicotinamide dehydrogenase [quinone]
Swissprot Id:
P16083
Alias Symbols:
QR2, DHQV, DIA6, NMOR2,
Replacement Item:
This antibody may replace item sc-18574 from Santa Cruz Biotechnology.
Description of Target:
Mouse Anti Human NAD(P)H Dehydrogenase Quinone 2
Host:
Mouse
Clonality:
Monoclonal
Application:
ELISA, WB
Tissue Tool:
Find tissues and cell lines supported by DNA array analysis to express NQO2.
RNA Seq:
Find tissues and cell lines supported by RNA-seq analysis to express NQO2.
Immunogen:
The immunogen for anti-NQO2 antibody: anti-human NQO2 mAb, is derived from hybridization of mouse FO myeloma cells with spleen cells from BALB/c mice immunized with recombinant human NQO2 amino acids 1-231 purified from E. coli.
Predicted Species Reactivity:
Human
Predicted Homology Based on Immunogen Sequence:
Human
Product Format:
1mg/ml containing PBS, pH-7.4, & 0.1% Sodium Azide.
Reconstitution and Storage:
For periods up to 1 month store at 4C, for longer periods of time, store at -20C. Prevent freeze thaw cycles.
Stability: 12 months at -20C. 1 month at 4C.
Datasheets/Manuals:
Printable datasheet for anti-NQO2 antibody - OAPA00356
Clone:
PAT1E3AT
Purity:
NQO2 antibody was purified from mouse ascitic fluids by protein-G affinity chromatography.
Isotype:
Mouse IgG1 heavy chain and kappa light chain.
Application Info:
NQO2 antibody has been tested by ELISA and Western blot analysis to assure specificity and reactivity. Since application varies, however, each investigation should be titrated by the reagent to obtain optimal results. Recommended dilution range for Western blot analysis is 1:250 ~ 500. Recommended starting dilution is 1:500.
:::
Product Introduction: NQO2 is a flavoprotein that catalyzes the 2-electron reduction of diverse quinones, redox dyes, and the vitamin K menadione. NQO2 mainly uses dihydronicotinamide riboside (NRH) as the electron donor. NQO2 catalyzes the metabolic detoxification of quinones and their derivatives to hydroquinones. This detoxification process protects cells against quinone-induced oxidative stress, cytotoxicity and mutagenicity.

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