EFNA1 Antibody / Ephrin A1
Ephrin A1 is a membrane-bound protein that interacts with Eph receptors on neighboring cells, initiating a cascade of signals that regulate cell behavior and movement. This interaction is essential for processes such as cell migration, tissue organization, and synaptic connectivity in the nervous system. Studies have shown that dysregulation of Ephrin A1 signaling can lead to aberrant cell growth, invasion, and metastasis in cancer cells, highlighting its importance in disease progression. One of the key features of Ephrin A1 is its ability to both attract and repel cells, depending on the context and concentration of the molecule. This dual role allows Ephrin A1 to fine-tune cell-cell interactions and ensure proper tissue patterning during development. In the brain, for example, Ephrin A1 guides axonal growth and synapse formation, shaping the intricate neural circuits that underlie cognitive functions. In addition to its role in development, Ephrin A1 has also been implicated in several disease processes. Aberrant expression of EFNA1 has been observed in various types of cancer, including breast, lung, and colon cancer, where it promotes tumor growth and invasion. In neurodegenerative disorders such as Alzheimer's disease, dysregulation of Ephrin A1 signaling disrupts synaptic connectivity and contributes to cognitive decline.
Product Specifications
Specifications
Western blot: 1:500-1:1000, Immunofluorescence: 1:50-1:100
UniProt
P20827
Host
Mouse
Reactivity
Human
Immunogen
A portion of amino acids 83-115 from the human protein was used as the immunogen for the EFNA1 antibody.
Clonality
Polyclonal
Isotype
Ig
Applications
WB, IF
Format
Purified
Limitations
This EFNA1 antibody is available for research use only.
Storage Conditions
Store the EFNA1 antibody at -20°C.
Formulation
In 1X PBS, pH 7.4, with 0.09% sodium azide and 50% glycerol
Applications Notes
Image Legend
Western blot testing of human MCF7 cell lysate with EFNA1 antibody. Predicted molecular weight ~24 kDa, 21 kDa (two isoforms) .
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