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Cations Modulate Polysaccharide Structure To Determine FGF−FGFR Signaling: A Comparison of Signaling and Inhibitory Polysaccharide Interactions with FGF-1 in Solution

Authors :
Edwin A. Yates
Scott E. Guimond
Timothy R. Rudd
Cesare Cosentino
Eric J. L. McInnes
Davide Gaudesi
Jeremy E. Turnbull
David Collison
Giangiacomo Torri
David G. Fernig
Alessandro Ori
Mark A. Skidmore
Ruth Edge
Marco Guerrini
Source :
Biochemistry. 48:4772-4779
Publication Year :
2009
Publisher :
American Chemical Society (ACS), 2009.

Abstract

For heparan sulfate (HS) to bind and regulate the activity of proteins, the polysaccharide must present an appropriate sequence and adopt a suitable conformation. The conformations of heparin derivatives, as models of HS, are altered via a change in the associated cations, and this can drastically modify their FGF signaling activities. Here, we report that changing the cations associated with an N-acetyl-enriched heparin polysaccharide, from sodium to copper(II), converted it from supporting signaling through the fibroblast growth factor receptor (FGF-1-FGFR1c) tyrosine kinase signaling system to being inhibitory in a cell-based BaF3 assay. Nuclear magnetic resonance and synchrotron radiation circular dichroism (SRCD) spectroscopy demonstrated that the polysaccharide conformation differed in the presence of sodium or copper(II) cations. Electron paramagnetic resonance confirmed the environment of the copper(II) ion on the N-acetyl-enriched polysaccharide was distinct from that previously observed with intact heparin, which supported signaling. Secondary structures in solution complexes of polysaccharides with FGF-1 (which either supported signaling through FGFR1c or were inhibitory) were determined by SRCD. This allowed direct comparison of the two FGF-1-polysaccharide complexes in solution, containing identical molecular components and differing only in their cation content. Subtle structural differences were revealed, including a reduction in the level of disordered structure in the inhibitory complex.

Details

ISSN :
15204995 and 00062960
Volume :
48
Database :
OpenAIRE
Journal :
Biochemistry
Accession number :
edsair.doi.dedup.....2073d42f35a395cafbc06d123681188d
Full Text :
https://doi.org/10.1021/bi802318z