EphA2 / DyLight 405 / 8F21
Product Details
Conjugate | DyLight 405 | |
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Clone | 8F21 | |
Target Species | Mouse | |
Applications | WB | |
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About EphA2
This gene belongs to the ephrin receptor subfamily of the protein-tyrosine kinase family. EPH and EPH-related receptors have been implicated in mediating developmental events, particularly in the nervous system. Receptors in the EPH subfamily typically have a single kinase domain and an extracellular region containing a Cys-rich domain and 2 fibronectin type III repeats. The ephrin receptors are divided into 2 groups based on the similarity of their extracellular domain sequences and their affinities for binding ephrin-A and ephrin-B ligands. This gene encodes a protein that binds ephrin-A ligands. Mutations in this gene are the cause of certain genetically-related cataract disorders.[provided by RefSeq, May 2010]
This gene belongs to the ephrin receptor subfamily of the protein-tyrosine kinase family. EPH and EPH-related receptors have been implicated in mediating developmental events, particularly in the nervous system. Receptors in the EPH subfamily typically have a single kinase domain and an extracellular region containing a Cys-rich domain and 2 fibronectin type III repeats. The ephrin receptors are divided into 2 groups based on the similarity of their extracellular domain sequences and their affinities for binding ephrin-A and ephrin-B ligands. This gene encodes a protein that binds ephrin-A ligands. Mutations in this gene are the cause of certain genetically-related cataract disorders.[provided by RefSeq, May 2010]
About DyLight 405
DyLight™ 405 has an excitation peak at 400 nm and an emission peak at 420 nm and is spectrally similar to Alexa Fluor™ 405 and Cascade Blue. DyLight™ 405 is most commonly used in flow cytometery and fluorescence microscopy applications.
DyLight™ 405 has an excitation peak at 400 nm and an emission peak at 420 nm and is spectrally similar to Alexa Fluor™ 405 and Cascade Blue. DyLight™ 405 is most commonly used in flow cytometery and fluorescence microscopy applications.
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