Dimerized glycosaminoglycan chains increase FGF signaling during zebrafish development

التفاصيل البيبلوغرافية
العنوان: Dimerized glycosaminoglycan chains increase FGF signaling during zebrafish development
المؤلفون: Duraikkannu Loganathan, Lena Kjellén, Mamoru Koketsu, Akinori Kojima, Thao Kim Nu Nguyen, Chi Bin Chien, Venkataswamy Sorna, Richard I. Dorsky, Inger Eriksson, Vy M. Tran, Balagurunathan Kuberan
المصدر: IndraStra Global.
بيانات النشر: American Chemical Society, 2013.
سنة النشر: 2013
مصطلحات موضوعية: Embryo, Nonmammalian, Morpholino, xylosides, Fibroblast growth factor, Biochemistry, 3 [4 methyl 2 (2 oxo 3 indolinylmethylidenyl) 3 pyrrolyl]propionic acid, Animals, Genetically Modified, zebra fish, animal, genetics, Glycosides, In Situ Hybridization, Zebrafish, Glycosaminoglycans, Regulation of gene expression, dimerization, biology, protein kinase inhibitor, Gene Expression Regulation, Developmental, General Medicine, gene expression regulation, priority journal, Fibroblast growth factor receptor, embryonic structures, fibroblast growth factor receptor, Molecular Medicine, Signal transduction, signal transduction, glycoside, Cell signaling, animal structures, Molecular Sequence Data, embryo, Tyrosine Kinase Inhibitor SU5402, chemistry, animal embryo, Wnt signaling pathway, fibroblast growth factor, glycosaminoglycan, embryology, Animals, controlled study, Pyrroles, development, Protein Kinase Inhibitors, antagonists and inhibitors, nonhuman, Base Sequence, nucleotide sequence, Fgf8 protein, zebrafish, zebrafish protein, Zebrafish Proteins, Molecular biology, Receptors, Fibroblast Growth Factor, transgenic animal, Fibroblast Growth Factors, Proteoglycan, scaffold protein, drug effects, molecular genetics, biology.protein, Syndecan-1, pyrrole derivative, syndecan 1, metabolism
الوصف: Proteoglycans (PGs) modulate numerous signaling pathways during development through binding of their glycosaminoglycan (GAG) side chains to various signaling molecules, including fibroblast growth factors (FGFs). A majority of PGs possess two or more GAG side chains, suggesting that GAG multivalency is imperative for biological functions in vivo. However, only a few studies have examined the biological significance of GAG multivalency. In this report, we utilized a library of bis- and tris-xylosides that produce two and three GAG chains on the same scaffold, respectively, thus mimicking PGs, to examine the importance of GAG valency and chain type in regulating FGF/FGFR interactions in vivo in zebrafish. A number of bis- and tris-xylosides, but not mono-xylosides, caused an elongation phenotype upon their injection into embryos. In situ hybridization showed that elongated embryos have elevated expression of the FGF target gene mkp3 but unchanged expression of reporters for other pathways, indicating that FGF/FGFR signaling was specifically hyperactivated. In support of this observation, elongation can be reversed by the tyrosine kinase inhibitor SU5402, mRNA for the FGFR antagonist sprouty4, or FGF8 morpholino. Endogenous GAGs seem to be unaffected after xyloside treatment, suggesting that this is a gain-of-function phenotype. Furthermore, expression of a multivalent but not a monovalent GAG containing syndecan-1 proteoglycan recapitulates the elongation phenotype observed with the bivalent xylosides. On the basis of these in vivo findings, we propose a new model for GAG/FGF/FGFR interactions in which dimerized GAG chains can activate FGF-mediated signal transduction pathways. � 2013 American Chemical Society.
اللغة: English
تدمد: 2381-3652
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::96dcca9a9c54f6e0f0b1e9253b1feaf5
https://igi.indrastra.com/items/show/81159
Rights: OPEN
رقم الانضمام: edsair.doi.dedup.....96dcca9a9c54f6e0f0b1e9253b1feaf5
قاعدة البيانات: OpenAIRE