Recombinant Human FGF13 protein
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Recombinant Human FGF13 protein is a Human Full Length protein, in the 1 to 245 aa range, expressed in Escherichia coli, with >95%, < 1 EU/µg endotoxin level, suitable for SDS-PAGE, HPLC.
View Alternative Names
FHF2, FGF13, Fibroblast growth factor 13, FGF-13, Fibroblast growth factor homologous factor 2, FHF-2
Reactivity data
Sequence info
Properties and storage information
Shipped at conditions
Appropriate short-term storage duration
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Aliquoting information
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
FGF13 plays important roles in regulating neuronal development and intracellular signaling pathways. It forms complexes with other proteins modulating their activities within cells. FGF13 is instrumental in neuronal outgrowth and synaptic plasticity essential functions for maintaining a healthy nervous system. Researchers identify FGF13 as important for proper neuronal positioning and survival.
Pathways
FGF13 is intricately involved in signaling mechanisms associated with ion channel regulation and mitogen-activated protein kinase (MAPK) pathway. It interacts with proteins such as kinases and other ion channel components to fine-tune cellular responses to extracellular stimuli. FGF13 by modulating these pathways assists in the precise control of cellular growth differentiation and adaptation.
Specifications
Form
Lyophilized
Additional notes
assessed also by HPLC analysis
General info
Function
Microtubule-binding protein which directly binds tubulin and is involved in both polymerization and stabilization of microtubules (By similarity). Through its action on microtubules, may participate in the refinement of axons by negatively regulating axonal and leading processes branching (By similarity). Plays a crucial role in neuron polarization and migration in the cerebral cortex and the hippocampus (By similarity). Regulates voltage-gated sodium channel transport and function (PubMed : 15282281, PubMed : 33245860, PubMed : 36696443). May also play a role in MAPK signaling (By similarity). Required for the development of axonal initial segment-targeting inhibitory GABAergic synapses made by chandelier neurons (By similarity).
Sequence similarities
Belongs to the heparin-binding growth factors family.
Post-translational modifications
May be phosphorylated.
Subcellular localisation
Nucleus
Target data
Product promise
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