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BRAND / VENDOR: Abcam

Abcam, ab309491, Anti-Aryl hydrocarbon Receptor antibody [EPR27537-70]

CATALOG NUMBER: ab309491
Regular price$0.99
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Product Description

Size: 20µL / 100µL / 1mL
Anti-Aryl hydrocarbon Receptor antibody [EPR27537-70] is a Rabbit Monoclonal antibody that is used in Aryl hydrocarbon Receptor Flow Cytometry (Intra), Western Blot. Suitable for Mouse samples. The Aryl Hydrocarbon Receptor (AhR) is a ligand-activated transcription factor. It is involved in various processes such as tumor initiation, progression, and metastasis. Studies on various tumor types and tumor cell lines have shown high AhR expression, suggesting that AhR is activated constitutively in tumors and facilitates their growth. AhR affects the immune system's ability to target cancer cells. For example, inhibiting AhR can restore normal NK cell maturation and enhance their ability to kill cancer cells.
Key facts
Host species:Rabbit,
Clonality:Monoclonal,
Clone number:EPR27537-70,
Isotype:IgG,
Carrier free:No,
Reacts with:Mouse,
Applications:IHC-P, Flow Cyt (Intra), WBSee reactivity dataSee the reactivity data table below for information on validated species and application combinations.,
Immunogen:The exact immunogen used to generate this antibody is proprietary information.

Product details:
Patented technology
Our RabMAb
technology is a patented hybridoma-based technology for making rabbit monoclonal antibodies. For details on our patents, please refer to
RabMAb® patents
What are the advantages of a recombinant monoclonal antibody?
This product is a recombinant monoclonal antibody, which offers several advantages including:
- High batch-to-batch consistency and reproducibility
- Improved sensitivity and specificity
- Long-term security of supply
- Animal-free batch production
For more information, read more on
recombinant antibodies

Properties and Storage Information:
Form-Liquid, Purification technique-Affinity purification Protein A, Storage buffer-pH: 7.2 - 7.4Preservative: 0.01% Sodium azideConstituents: PBS, 40% Glycerol (glycerin, glycerine), 0.05% BSA, Shipped at conditions-Blue Ice, Appropriate short-term storage duration-1-2 weeks, Appropriate short-term storage conditions-+4°C, Appropriate long-term storage conditions--20°C, Aliquoting information-Upon delivery aliquot, Storage information-Avoid freeze / thaw cycle

Supplementary Information:
This supplementary information is collated from multiple sources and compiled automatically.
The Aryl hydrocarbon Receptor (AhR) also known as the Ah receptor is a ligand-activated transcription factor expressed in various tissues including liver lung and skin. The AhR has a molecular mass of approximately 96 kDa. It forms a complex with the aryl hydrocarbon receptor nuclear translocator (ARNT) upon ligand binding. AhR can bind to several compounds including aryl azide influencing the expression of numerous genes involved in xenobiotic metabolism.
Biological function summary
The AhR plays an important role in the regulation of detoxification enzymes such as cytochrome P450s. This receptor functions as a sensor for environmental toxins activating detoxification pathways once bound to ligands. It also contributes to the modulation of immune responses and development processes. The AhR often forms part of a larger protein complex to exert its effects on gene expression and cellular processes.
Pathways
The AhR significantly participates in the xenobiotic metabolism pathway and the dioxin signaling pathway. It interacts with proteins such as ARNT and cytochrome P450 enzymes to mediate the cellular response to toxins. The activity of AhR regulates the expression of phase I and phase II detoxification enzymes making it an integral part of the body’s defense against environmental chemicals.
Disturbances in AhR activity have been linked to cancer and autoimmune diseases. Altered expression or function of AhR can contribute to aberrant cell proliferation and immune dysregulation. The AhR interacts with other proteins like peroxidase and its substrates playing a role in oxidative stress responses associated with these conditions. Understanding these links can offer insights into therapeutic targets for related diseases.


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Collaboration

Tony Tang

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