Mouse Fibroblast growth factor 10 ELISA Kit | Fgf10 elisa kit
Mouse Fibroblast growth factor 10 ELISA Kit
NCBI and Uniprot Product Information
Uniprot Description
FGF10: Plays an important role in the regulation of embryonic development, cell proliferation and cell differentiation. Required for normal branching morphogenesis. May play a role in wound healing. Interacts with FGFR1 and FGFR2. Interacts with FGFBP1. Belongs to the heparin-binding growth factors family.
Protein type: Secreted; Secreted, signal peptide; Cell development/differentiation; Cytokine; Motility/polarity/chemotaxis
Cellular Component: cell surface; extracellular matrix; extracellular region; extracellular space; nucleus; plasma membrane
Molecular Function: chemoattractant activity; fibroblast growth factor receptor binding; growth factor activity; heparin binding; protein binding; receptor binding; type 2 fibroblast growth factor receptor binding
Biological Process: actin cytoskeleton reorganization; activation of MAPK activity; alveolus development; blood vessel morphogenesis; blood vessel remodeling; branching morphogenesis of a tube; cell-cell signaling; chemotaxis; determination of left/right symmetry; embryonic camera-type eye development; embryonic digestive tract morphogenesis; embryonic genitalia morphogenesis; embryonic gut development; embryonic pattern specification; epidermis development; epidermis morphogenesis; epithelial cell differentiation; epithelial cell proliferation; establishment of mitotic spindle orientation; female genitalia morphogenesis; fibroblast growth factor receptor signaling pathway; G1/S-specific positive regulation of cyclin-dependent protein kinase activity; gut development; hair follicle morphogenesis; induction of an organ; induction of positive chemotaxis; inner ear morphogenesis; keratinocyte proliferation; lacrimal gland development; limb bud formation; limb development; limb morphogenesis; lung development; male genitalia morphogenesis; muscle cell fate commitment; negative regulation of cell differentiation; negative regulation of cell proliferation; odontogenesis of dentine-containing teeth; organ formation; organ growth; organ morphogenesis; otic vesicle formation; pancreas development; pituitary gland development; positive chemotaxis; positive regulation of ATPase activity; positive regulation of cell proliferation; positive regulation of DNA repair; positive regulation of DNA replication; positive regulation of epithelial cell proliferation; positive regulation of fibroblast proliferation; positive regulation of keratinocyte migration; positive regulation of lymphocyte proliferation; positive regulation of MAPKKK cascade; positive regulation of mitotic cell cycle; positive regulation of Notch signaling pathway; positive regulation of peptidyl-tyrosine phosphorylation; positive regulation of Ras protein signal transduction; positive regulation of transcription from RNA polymerase II promoter; positive regulation of transcription, DNA-dependent; positive regulation of urothelial cell proliferation; positive regulation of vascular endothelial growth factor receptor signaling pathway; positive regulation of Wnt receptor signaling pathway; radial glial cell differentiation; regulation of activin receptor signaling pathway; regulation of epithelial cell proliferation; regulation of gene expression; regulation of saliva secretion; regulation of smoothened signaling pathway; salivary gland development; salivary gland morphogenesis; semicircular canal morphogenesis; smooth muscle cell differentiation; somatic stem cell maintenance; spleen development; thymus development; thyroid gland development; urothelial cell proliferation; white fat cell differentiation; wound healing