
Jurkat Cell Lysate. This image was taken for the unconjugated form of this product. Other forms have not been tested.
GABPA / NRF2 Antibody (aa359-408)
Primary AntibodyLSBio Guarantee
| Antibody: | Rabbit Polyclonal |
| Applications: | Immunohistochemistry (general), Immunohistochemistry, Paraffin, Western Blot |
| Reactivity: | Human, Mouse |
| Format: | Liquid |
$405.00each
Catalog Number: LS-C31637-100
Catalog Number: LS-C31637
For bulk orders or custom formulations:
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- Description
- NRF2 antibody LS-C31637 is an unconjugated rabbit polyclonal antibody to NRF2 (GABPA) (aa359-408) from human. It is reactive with human and mouse. Validated for IHC and WB. Cited in 1 publication.
- Application
- IHC, IHC-P, WB
- Reactivity
- Hu, Ms
- Intended Use
- Research Use Only
- Guarantees
- This antibody carries the LSBio 100% Guarantee. ✓
- Category
- Antibodies > Primary Antibodies > Polyclonal Antibodies
- Alternative Names
- E4TF1A | E4TF1-60 | GA-binding protein alpha chain | NRF2A | RCH04A07 | GABP subunit alpha | GABPA | NFT2 | NRF2 | Transcription factor E4TF1-60
- UniProt Number
- Q06546
- NCBI GenBank
- NM_002040 | NP_002031.2
- SwissProt
- Q06546
Target
- Target
- Human GABPA / NRF2
- Antigen Species
- Human
- Epitope
- Human GABPA
- Gene Name
- GABPA
Antibody
- Host Species
- Rabbit
- Clonality
- Polyclonal
Immunogen
- Immunogen
- Synthetic peptide located between aa359-408 of human GABPA (Q06546, NP_002031). Percent identity by BLAST analysis: Human, Chimpanzee, Gibbon, Monkey, Galago, Marmoset, Mouse, Rat, Dog, Bovine, Horse, Zebrafish (100%).
- Immunogen Type
- Synthetic Peptide (Linear)
Format
- Conjugate/Label
- Unconjugated
- Format
- Liquid
- Formulation
- PBS, 0.09% sodium azide, 2% sucrose
- Concentration
- 1 mg/mL
- Volume
- 100 Microliter
- Preservative
- Yes
- Purification Method
- Protein A/G Affinity
Storage & Handling
- Storage Conditions
- Short term: Store at 2-8°C. Long term: Aliquot and store at -20°C. Avoid freeze/thaw cycles.
- Recommended Storage Buffer
- PBS
Protection by vitamin D against high-glucose-induced damage in retinal pigment epithelial cells. Ali Mohammad Tohari, Mohammad Almarhoun, Reem Hasaballah Alhasani, Lincoln Biswas, Xinzhi Zhou, James Reilly, Zhihong Zeng, Xinhua Shu. Experimental cell research. 2020 July;392:112023. PubMed: 32325079
