Long Pentraxin 3/Tumor Necrosis Factor-Stimulated Gene-6 Interaction

Author:

Leali Daria1,Inforzato Antonio1,Ronca Roberto1,Bianchi Roberta1,Belleri Mirella1,Coltrini Daniela1,Di Salle Emanuela1,Sironi Marina1,Norata Giuseppe Danilo1,Bottazzi Barbara1,Garlanda Cecilia1,Day Anthony J.1,Presta Marco1

Affiliation:

1. From the Unit of General Pathology and Immunology (D.L., R.R., R.B., M.B., E.D.S., M.P.) and Unit of Histology (D.C.), Department of Biomedical Sciences and Biotechnology, School of Medicine, University of Brescia, Brescia, Italy; Istituto di Ricovero e Cura a Carattere Scientifico Humanitas, Rozzano, Italy (A.I., M.S., B.B., C.G.); Department of Pharmacological Sciences, University of Milan, Milan, Italy (G.D.N.); Wellcome Trust Centre for Cell-Matrix Research, Faculty of Life Sciences, University...

Abstract

Objective— Angiogenesis is regulated by the balance between pro- and antiangiogenic factors and by extracellular matrix protein interactions. Fibroblast growth factor 2 (FGF2) is a major proangiogenic inducer inhibited by the interaction with the soluble pattern recognition receptor long pentraxin 3 (PTX3). PTX3 is locally coexpressed with its ligand tumor necrosis factor-stimulated gene-6 (TSG-6), a secreted glycoprotein that cooperates with PTX3 in extracellular matrix assembly. Here, we characterized the effect of TSG-6 on PTX3/FGF2 interaction and FGF2-mediated angiogenesis. Methods and Results— Solid phase binding and surface plasmon resonance assays show that TSG-6 and FGF2 bind the PTX3 N-terminal domain with similar affinity. Accordingly, TSG-6 prevents FGF2/PTX3 interaction and suppresses the inhibition exerted by PTX3 on heparan sulfate proteoglycan/FGF2/FGF receptor complex formation and on FGF2-dependent angiogenesis in vitro and in vivo. Also, endogenous PTX3 exerts an inhibitory effect on vascularization induced by FGF2 in a murine subcutaneous Matrigel plug assay, the inhibition being abolished in Ptx3 -null mice or by TSG-6 treatment in wild-type animals. Conclusion— TSG-6 reverts the inhibitory effects exerted by PTX3 on FGF2-mediated angiogenesis through competition of FGF2/PTX3 interaction. This may provide a novel mechanism to control angiogenesis in those pathological settings characterized by the coexpression of TSG-6 and PTX3, in which the relative levels of these proteins may fine-tune the angiogenic activity of FGF2.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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