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BRAND / VENDOR: Abcam

Abcam, ab32517, Anti-MEK2 antibody [Y78]

CATALOG NUMBER: ab32517
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Product Description

Size: 20µL / 100µL / 1mL
Rabbit Recombinant Monoclonal MEK2 antibody. Suitable for IHC-P, WB, ICC/IF, Flow Cyt (Intra) and reacts with Human, Mouse samples. Cited in 15 publications.
Key facts
Host species:Rabbit,
Clonality:Monoclonal,
Clone number:Y78,
Isotype:IgG,
Carrier free:No,
Reacts with:Mouse, Human,
Applications:Flow Cyt (Intra), WB, ICC/IF, IHC-PSee 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.,
Specificity:This antibody does not cross react with other MAP kinase kinase family members

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
Species reactivity
Rat: We have preliminary internal testing data to indicate this antibody may not react with this species.
Please
contact us
for more information.

Properties and Storage Information:
Form-Liquid, Purification technique-Affinity purification Protein A, Storage buffer-pH: 7.2 - 7.4Preservative: 0.01% Sodium azideConstituents: PBS, 50% Glycerol (glycerin, glycerine), 0.05% BSA, Shipped at conditions-Blue Ice, 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.
MEK2 or MAP2K2 is a protein kinase with a mass of approximately 44 kDa. This kinase part of the Mitogen-Activated Protein Kinase (MAPK) pathway primarily functions mechanically as a dual-specificity protein kinase. It phosphorylates both serine/threonine and tyrosine residues on its substrate proteins. MEK2 is largely expressed in various tissues including the brain and heart. It serves an important role in relaying extracellular signals within cells leading to diverse cellular responses.
Biological function summary
MEK2 participates in signal transduction pathways mediating cell division differentiation and apoptosis. As a part of the MAPK signaling cascade it operates downstream of RAS and RAF proteins. MEK2 forms a complex with MEK1 another closely related kinase to ensure proper signal relay. This complex plays a significant role in the regulation of cellular responses to growth signals and stress.
Pathways
MEK2 is intricately connected to the ERK1/2 pathway one of the key pathways it is involved in. ERK1/2 (Extracellular signal-Regulated Kinases) further transmits signals to the cell's nuclear components regulating gene expression critically. MEK2 directly phosphorylates and activates ERK1 and ERK2 facilitating their role in transcription cell cycle regulation and maintenance of cell integrity. The interaction of MEK2 with proteins like BRAF and CRAF along the MAPK pathway amplifies the signal transduction for various growth factors and hormones.
MEK2 has a notable association with cancer particularly melanoma and colorectal cancer. It often becomes aberrantly activated leading to unregulated cell proliferation. The connection of MEK2 to ERK1/2 proteins in these malignancies makes it a potential therapeutic target. Furthermore MEK2 mutations can contribute to Noonan syndrome a disorder that affects multiple body systems marking its relationship with genetic abnormalities and developmental issues. Researchers have been investigating MEK inhibitors to target these disorders highlighting the importance of understanding MEK2's role in disease contexts.


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Collaboration

Tony Tang

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