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Open AccessJournal ArticleDOI

The Fibroblast Growth Factor signaling pathway

TLDR
Members of the FGF family function in the earliest stages of embryonic development and during organogenesis to maintain progenitor cells and mediate their growth, differentiation, survival, and patterning.
Abstract
The signaling component of the mammalian Fibroblast Growth Factor (FGF) family is comprised of eighteen secreted proteins that interact with four signaling tyrosine kinase FGF receptors (FGFRs) Interaction of FGF ligands with their signaling receptors is regulated by protein or proteoglycan cofactors and by extracellular binding proteins Activated FGFRs phosphorylate specific tyrosine residues that mediate interaction with cytosolic adaptor proteins and the RAS-MAPK, PI3K-AKT, PLCγ, and STAT intracellular signaling pathways Four structurally related intracellular non-signaling FGFs interact with and regulate the family of voltage gated sodium channels Members of the FGF family function in the earliest stages of embryonic development and during organogenesis to maintain progenitor cells and mediate their growth, differentiation, survival, and patterning FGFs also have roles in adult tissues where they mediate metabolic functions, tissue repair, and regeneration, often by reactivating developmental signaling pathways Consistent with the presence of FGFs in almost all tissues and organs, aberrant activity of the pathway is associated with developmental defects that disrupt organogenesis, impair the response to injury, and result in metabolic disorders, and cancer © 2015 Wiley Periodicals, Inc

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Journal ArticleDOI

Tumor angiogenesis: causes, consequences, challenges and opportunities.

TL;DR: The current understanding of cellular and molecular mechanisms involved in tumor angiogenesis is summarized and challenges and opportunities associated with vascular targeting are discussed.
Journal ArticleDOI

Fibroblast growth factor signaling in skeletal development and disease

TL;DR: Progress made on understanding the functions of the FGF signaling pathway during critical stages of skeletogenesis is examined, and the mechanisms by which mutations in FGF signalling molecules cause skeletal malformations in humans are explored.
Journal ArticleDOI

The molecular basis of endothelial cell plasticity

TL;DR: The endothelium is capable of remarkable plasticity in the embryo and in the adult, maintenance of differentiated endothelial state is an active process requiring constant signalling input that leads to the development of endothelial-to-mesenchymal transition that plays an important role in pathogenesis of a number of diseases.
References
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Journal ArticleDOI

Fgf18 is required for embryonic lung alveolar development.

TL;DR: The present findings indicate that the Fgf18 plays roles in lung alveolar development during late embryonic lung development stages, and the cell proliferation during the terminal saccular stage stimulated by F gf18 might play roles in the remodeling of the distal lung.
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Fgf10 is an oncogene activated by MMTV insertional mutagenesis in mouse mammary tumors and overexpressed in a subset of human breast carcinomas

TL;DR: Se sequencing the DNA adjacent to MMTV proviral insertions in mammary tumors from BALB/c mice infected with C3H-MMTV has found a common MMTV insertion site in the Fgf10 locus, suggesting that F gf10 is a proto-oncogene.
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A recurrent mutation, ala391glu, in the transmembrane region of FGFR3 causes Crouzon syndrome and acanthosis nigricans.

TL;DR: The identification of a mutation in the transmembrane region of FGFR3, common to three unrelated patients with classical Crouzon syndrome and acanthosis nigricans, a dermatological condition associated with thickening and abnormal pigmentation of the skin.
Journal ArticleDOI

Regulation of fibroblast growth factor receptor signalling and trafficking by Src and Eps8

TL;DR: This work provides the first detailed mechanistic analysis of growth factor receptor clustering at the cell surface through signal transduction and endocytic trafficking, and provides novel mechanistic insight into the reciprocal regulation of growth factors receptor signalling and trafficking.
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