Abstract

Fibronectin (FN), an essential component of the extracellular matrix (ECM), is assembled via a cell-mediated process in which integrin receptors bind secreted FN and mediate its polymerization into fibrils that extend between cells, ultimately forming an insoluble matrix. Our previous work using mutant Chinese hamster ovary (CHO) cells identified the glycosaminoglycan heparan sulfate (HS) and its binding to FN as essential for the formation of insoluble FN fibrils. In this study, we investigated the contributions of HS at an early stage of the assembly process using knockdown of exostosin-1 (EXT1), one of the glycosyltransferases required for HS chain synthesis. NIH 3T3 fibroblasts with decreased EXT1 expression exhibited a significant reduction in both FN and type I collagen in the insoluble matrix. We show that FN fibril formation is initiated at matrix assembly sites, and while these sites were formed by cells with EXT1 knockdown, their growth was stunted compared with wild-type cells. The most severe defect observed was in the polymerization of nascent FN fibrils, which was reduced 2.5-fold upon EXT1 knockdown. This defect was rescued by the addition of exogenous soluble heparin chains long enough to simultaneously bind multiple FN molecules. The activity of soluble heparin in this process indicates that nascent fibril formation depends on HS more so than on the protein component of a specific HS proteoglycan. Together, our results suggest that heparin or HS is necessary for concentrating and localizing FN molecules at sites of early fibril assembly.

Highlights

  • Of a fibronectin (FN) extracellular matrix (ECM) is essential for embryogenesis and the development, repair, regeneration, and homeostasis of all tissues

  • The heparin-binding domain (HepII) domain of FN, containing the primary Heparan sulfate (HS)/ heparin-binding site, has been implicated in matrix assembly, and our previous studies with Chinese hamster ovary (CHO)-677 cells that lack HS showed a role for this GAG in formation of DOC-insoluble fibrils, a late stage in the assembly process [13]

  • We show that NIH 3T3 fibroblasts that naturally assemble a dense FN matrix are dependent on HS

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Summary

RESEARCH ARTICLE

Schwarzbauer* From the Department of Molecular Biology, Princeton University, Princeton, New Jersey, USA

Edited by Gerald Hart
Results
Heparan sulfate in fibronectin and collagen assembly
HS promotes matrix assembly site formation
Discussion
Experimental procedures
RNA extraction and qPCR
Cell lysis and immunoblotting
Immunofluorescence microscopy
Assays for FN matrix assembly sites and nascent fibril assembly
Full Text
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