The Heparan Sulfate–Fibroblast Growth Factor Family: Diversity of Structure and Function

Author(s):  
Wallace L. McKeehan ◽  
Fen Wang ◽  
Mikio Kan
Circulation ◽  
2014 ◽  
Vol 129 (suppl_1) ◽  
Author(s):  
Jeffrey R Misialek ◽  
Alvaro Alonso ◽  
Erin D Michos ◽  
Scott D Solomon ◽  
Amil M Shah ◽  
...  

Introduction: Fibroblast growth factor 23 (FGF23), an endocrine hormone, induced left ventricular (LV) hypertrophy through direct action in experimental animal models. The association of FGF23 with echocardiographic measures in humans is relatively uncharacterized. Hypothesis: Higher levels of FGF23 will be cross-sectionally associated with more adverse echocardiographic measures of LV structure and function. Methods: We conducted a cross-sectional analysis of 2086 African-American adults (66% female, median age 55) from a subset of the ARIC Study, a community-based cohort in the United States. Intact active FGF23 was assessed in blood samples collected at ARIC visit two (1990-1992). Echocardiography was performed at visit three (1993-1995) in participants recruited at the Jackson field center only. We used multivariable linear regression to evaluate the associations of FGF23 (per 15 pg/mL change) with echocardiographic measures after adjustment for traditional cardiovascular risk factors assessed at visit two. We also examined differences in observed associations by age and sex using interaction terms. Results: FGF23 was significantly associated with greater left atrial diameter and LV mass index (Table). A significant sex interaction was identified for LV diameter (p-interaction = 0.005). No association was observed in men while a positive association was observed among women. An adverse, decreasing trend in percent fractional shortening of the LV diameter at higher levels of FGF was stronger in individuals aged >55 (p-interaction = 0.03). No linear association was found between FGF23 and E/A ratio. Conclusion: FGF23 was associated with higher LV mass, larger LV size, and lower LV systolic function. These findings are consistent with results from experimental animal studies and provide evidence suggesting that cardiac structure and function may be influenced by FGF23 in humans. Prospective studies are needed to evaluate whether FGF23 is associated with change in markers of cardiac structure and function.


1997 ◽  
Vol 346 (2) ◽  
pp. 252-262 ◽  
Author(s):  
Jonathan R. Fromm ◽  
Ronald E. Hileman ◽  
John M. Weiler ◽  
Robert J. Linhardt

1995 ◽  
Vol 1 (1) ◽  
pp. 53-58 ◽  
Author(s):  
Hldeichi Takayama ◽  
Jasodhara Ray ◽  
Heather K. Raymon ◽  
Andrew Baird ◽  
Joanna Hogg ◽  
...  

2011 ◽  
Vol 286 (22) ◽  
pp. 19311-19319 ◽  
Author(s):  
Hicham Naimy ◽  
Jo Ann Buczek-Thomas ◽  
Matthew A. Nugent ◽  
Nancy Leymarie ◽  
Joseph Zaia

Human fibroblast growth factor-2 (FGF2) regulates cellular processes including proliferation, adhesion, motility, and angiogenesis. FGF2 exerts its biological function by binding and dimerizing its receptor (FGFR), which activates signal transduction cascades. Effective binding of FGF2 to its receptor requires the presence of heparan sulfate (HS), a linear polysaccharide with N-sulfated domains (NS) localized at the cell surface and extracellular matrix. HS acts as a platform facilitating the formation of a functional FGF-FGFR-HS ternary complex. Crystal structures of the signaling ternary complex revealed two conflicting architectures. In the asymmetrical model, two FGFs and two FGFRs bind a single HS chain. In contrast, the symmetrical model postulates that one FGF and one FGFR bind to the free end of the HS chain and dimerization require these ends to join, bringing the two half-complexes together. In this study, we screened a hexasaccharide HS library for compositions that are able to bind FGF2. The library was composed primarily of NS domains internal to the HS chain with minor presence of non-reducing end (NRE) NS. The binders were categorized into low versus high affinity binders. The low affinity fraction contained primarily hexasaccharides with low degree of sulfation that were internal to the HS chains. In contrast, the high affinity bound fraction was enriched in NRE oligosaccharides that were considerably more sulfated and had the ability to promote FGFR-mediated cell proliferation. The results suggest a role of the NRE of HS in FGF2 signaling and favor the formation of the symmetrical architecture on short NS domains.


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