EphA4 Protein, Rat (HEK293, Fc)
EphA4 Protein, a receptor tyrosine kinase, engages in contact-dependent bidirectional signaling with ephrin-A and ephrin-B ligands. Activated by GPI-anchored EFNA and transmembrane EFNB, EphA4 regulates cell morphology, integrin-dependent adhesion, and GTPase activity. Crucial in nervous system development, it guides axonal projections, segregates motor and sensory axons, and influences synaptic plasticity. In injury repair and angiogenesis, EphA4 inhibits axonal regeneration and contributes to vascular formation. Its promiscuity extends to thymic epithelium development, cochlear organ of Corti formation, and phosphorylation of CAPRIN1 for membraneless compartment formation. EphA4 Protein, Rat (HEK293, Fc) is the recombinant rat-derived EphA4 protein, expressed by HEK293 , with C-hFc labeled tag.
- Species: Rat
- Source: HEK293
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Storage:Stored at -80°C for 1 year from date of receipt. It is stable at -20°C for 3 months after opening. It is recommended to freeze aliquots at -80°C for extended storage. Avoid repeated freeze-thaw cycles.
Biological Activity
Description
EphA4 Protein, a receptor tyrosine kinase, engages in contact-dependent bidirectional signaling with ephrin-A and ephrin-B ligands. Activated by GPI-anchored EFNA and transmembrane EFNB, EphA4 regulates cell morphology, integrin-dependent adhesion, and GTPase activity. Crucial in nervous system development, it guides axonal projections, segregates motor and sensory axons, and influences synaptic plasticity. In injury repair and angiogenesis, EphA4 inhibits axonal regeneration and contributes to vascular formation. Its promiscuity extends to thymic epithelium development, cochlear organ of Corti formation, and phosphorylation of CAPRIN1 for membraneless compartment formation. EphA4 Protein, Rat (HEK293, Fc) is the recombinant rat-derived EphA4 protein, expressed by HEK293 , with C-hFc labeled tag.
Background
EphA4, a receptor tyrosine kinase, engages in contact-dependent bidirectional signaling with membrane-bound ephrin family ligands on adjacent cells. Distinguished by its high promiscuity, EphA4 uniquely binds and is physiologically activated by both GPI-anchored ephrin-A and transmembrane ephrin-B ligands, including EFNA1 and EFNB3. Upon activation by ephrin ligands, EphA4 modulates cell morphology and integrin-dependent cell adhesion through the regulation of Rac, Rap, and Rho GTPases activity. Crucial in the development of the nervous system, EphA4 controls various steps of axonal guidance, including the establishment of corticospinal projections and the segregation of motor and sensory axons during neuromuscular circuit development. In synaptic plasticity, EphA4 participates by phosphorylating CDK5 at 'Tyr-15,' leading to the regulation of RHOA and dendritic spine morphogenesis. Furthermore, EphA4 plays roles in repair after injury by preventing axonal regeneration and in angiogenesis, contributing to central nervous system vascular formation. Its promiscuity extends its involvement in various cell-cell signaling processes, regulating the development of the thymic epithelium and, during the development of the cochlear organ of Corti, facilitating pillar cell separation through the formation of a ternary complex with ADAM10 and CADH1, leading to the cleavage of CADH1 and disruption of adherens junctions. EphA4 also phosphorylates CAPRIN1, promoting CAPRIN1-dependent formation of a membraneless compartment[1][2][3][4].
Technical Parameters
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Species Rat
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Source HEK293
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Tag C-hFc
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Accession
D3ZZK3 (V20-T547)
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Molecular Construction
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N-term
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EphA4 (V20-T547)
Accession # D3ZZK3 -
hFc
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C-term
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Protein Length
Partial
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Synonyms
EPHA4; EK8; Prev. TYRO1; Receptor Protein-Tyrosine Kinase HEK8; Hek8; Receptor Protein-Tyrosine Kinase; Tyrosine-Protein Kinase Receptor SEK; TYRO1 Protein Tyrosine Kinase; Tyrosine-Protein Kinase TYRO1; EphA4; Ephrin Type-A Receptor 4; HEK8; EPH-Like Kin
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AA Sequence
VTGSRVYPANEVTLLDSRSVQGELGWIASPLEGGWEEVSIMDEKNTPIRTYQVCNVMEASQNNWLRTDWITREGAQRVYIEIKFTLRDCNSLPGVMGTCKETFNLYYYESDNDKERFIRESQFGKIDTIAADESFTQVDIGDRIMKLNTEIRDVGPLSKKGFYLAFQDVGACIALVSVRVFYKKCPLTVRNLAQFPDTITGADTSSLVEVRGSCVNNSEEKDVPKMYCGADGEWLVPIGNCLCNAGHEEQNGECQACKIGYYKALSTDATCAKCPPHSYSVWEGATSCTCDRGFFRADNDAASMPCTRPPSAPLNLISNVNETSVNLEWSSPQNTGGRQDISYNVVCKKCGAGDPSKCRPCGSGVHYTPQQNGLKTTRVSITDLLAHTNYTFEIWAVNGVSKYNPSPDQSVSVTVTTNQAAPSSIALVQAKEVTRYSVALAWLEPDRPNGVILEYEVKYYEKDQNERSYRIVRTAARNTDIKGLNPLTSYVFHVRARTAAGYGDFSEPLEVTTNTVPSRIIGDGANST
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Predicted Molecular Mass
85.3 kDa
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Molecular Weight
Approximately 98 kDa, based on SDS-PAGE under reducing conditions.
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Purity
≥ 95%, as determined by reducing SDS-PAGE.
Product Properties
Solution.
<1 EU/μg, determined by LAL method.
Please use rapid thawing with running water to thaw the protein.
Stored at -80°C for 1 year from date of receipt. It is stable at -20°C for 3 months after opening. It is recommended to freeze aliquots at -80°C for extended storage. Avoid repeated freeze-thaw cycles.
Shipping with dry ice.
Documentation
References
[1]. Iwasato T, et al. Rac-GAP alpha-chimerin regulates motor-circuit formation as a key mediator of EphrinB3/EphA4 forward signaling. Cell. 2007 Aug 24;130(4):742-53. [Content Brief]
[2]. Gallarda BW, et al. Segregation of axial motor and sensory pathways via heterotypic trans-axonal signaling. Science. 2008 Apr 11;320(5873):233-6. [Content Brief]
[3]. Fu WY, et al. Cdk5 regulates EphA4-mediated dendritic spine retraction through an ephexin1-dependent mechanism. Nat Neurosci. 2007 Jan;10(1):67-76. [Content Brief]
[4]. Defourny J, et al. EphA4-ADAM10 Interplay Patterns the Cochlear Sensory Epithelium through Local Disruption of Adherens Junctions. iScience. 2019 Jan 25;11:246-257. [Content Brief]
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)