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Open AccessJournal ArticleDOI

Fibroblast growth factors, their receptors and signaling.

Ciaran Powers, +2 more
- 01 Sep 2000 - 
- Vol. 7, Iss: 3, pp 165-197
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TLDR
FGF signaling also appears to play a role in tumor growth and angiogenesis, and autocrine FGF signaling may be particularly important in the progression of steroid hormone-dependent cancers to a hormone-independent state.
Abstract
Fibroblast growth factors (FGFs) are small polypeptide growth factors, all of whom share in common certain structural characteristics, and most of whom bind heparin avidly. Many FGFs contain signal peptides for secretion and are secreted into the extracellular environment, where theycan bind to the heparan-like glycosaminoglycans (HLGAGs) of the extracellular matrix (ECM). From this reservoir, FGFs mayact directlyon target cells, or theycan be released through digestion of the ECM or the activityof a carrier protein, a secreted FGF binding protein. FGFs bind specific receptor tyrosine kinases in the context of HLGAGs and this binding induces receptor dimerization and activation, ultimatelyresulting in the activation of various signal transduction cascades. Some FGFs are potent angiogenic factors and most playimportant roles in embry onic development and wound healing. FGF signaling also appears to playa role in tumor growth and angiogenesis, and autocrine FGF signaling maybe particularlyimportant in the progression of steroid hormone-dependent cancers to a hormone-independent state.

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Journal ArticleDOI

Growth factors and cytokines in wound healing.

TL;DR: A review of the specific roles of these growth factors and cytokines during wound healing can be found in this article, where patients are treated by three growth factors: PDGF-BB, bFGF, and GM-CSF.
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Fibroblast growth factors

TL;DR: A subset of the FGF family, expressed in adult tissue, is important for neuronal signal transduction in the central and peripheral nervous systems.
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FGF-21 as a novel metabolic regulator

TL;DR: It is concluded that FGF-21, which was discovered to be a potent regulator of glucose uptake in mouse 3T3-L1 and primary human adipocytes, exhibits the therapeutic characteristics necessary for an effective treatment of diabetes.
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The Fibroblast Growth Factor signaling pathway

TL;DR: 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.
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Receptor specificity of the fibroblast growth factor family. The complete mammalian FGF family.

TL;DR: This study completes the mitogenesis-based comparison of receptor specificity of the entire FGF family under standard conditions and should help in interpreting and predicting in vivo biological activity.
References
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Journal ArticleDOI

Sonic hedgehog and Fgf-4 act through a signaling cascade and feedback loop to integrate growth and patterning of the developing limb bud.

TL;DR: The authors' results indicate that Sonic hedgehog initiates expression of secondary signaling molecules, including Bmp-2 in the mesoderm and Fgf-4 in the ectoderm, which provide a basis for understanding the integration of growth and patterning in the developing limb.
Journal Article

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TL;DR: It is hypothesized here that the information for these processes, termed "protein topogenesis," is encoded in discrete "topogenic" sequences that constitute a permanent or transient part of the polypeptide chain.
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Endothelial Cell-derived Heparan Sulfate Binds Basic Fibroblast Growth Factor and Protects It from Proteolytic Degradation

TL;DR: It is suggested that heparan sulfate released either directly by cells or through proteolytic degradation of their extracellular milieu may act as carrier for bFGF and facilitate the diffusion of locally produced growth factor by competing with its binding to surrounding matrix structures.
Journal ArticleDOI

Glycosaminoglycans and their binding to biological macromolecules.

TL;DR: STRUCTURE and BIOSYNTHESIS of GL YCOSAMINOGL YCANS: Foundations and biosynthesis of GL ycans.
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A novel secretory pathway for interleukin-1 beta, a protein lacking a signal sequence.

TL;DR: It is shown that IL‐1 beta is actively secreted by activated human monocytes via a pathway of secretion different from the classical endoplasmic reticulum‐‐Golgi route, which may involve translocation of intracellular membranes and is increased by stress conditions.
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