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Fibronectin's amino-terminal matrix assembly site is located within the 29-kDa amino-terminal domain containing five
1Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110.
Abstract:
Fibronectin is organized into disulfide cross-linked, insoluble pericellular matrix fibrils by fibroblasts in vitro. Two sites, the Arg-Gly-Asp-Ser-containing cell attachment domain and a site located in the first 70 kDa of fibronectin, are required for matrix assembly. The first 70 kDa of fibronectin contain two structural motifs termed type I and type II homologies, which are repeated nine and two times, respectively. Previous work has implicated the amino-terminal region and the carboxyl terminus containing three type I repeats in matrix assembly, suggesting that type I repeats possess binding activity essential for fibronectin matrix assembly. To test this hypothesis, we developed a sensitive capture immunoassay to quantify insoluble matrix fibronectin and tested a panel of fibronectin fragments, containing all of the type I repeats found in the intact protein, for their ability to inhibit matrix assembly. Only fragments containing the first five type I repeats inhibited fibronectin matrix assembly, although sequences carboxyl-terminal to this domain enhanced this activity. Additional evidence for the specific recognition of the amino-terminal type I repeats by matrix assembling cells was found when the reversible, detergent-sensitive binding of a 125I-labeled fragment containing the first five type I repeats (29 kDa) to cell monolayers was studied. Only monolayers of cell lines that incorporate fibronectin into a fibrillar matrix specifically bound 125I-labeled 29 kDa. Binding of the radiolabeled amino-terminal fragment to matrix-forming cells was inhibited by unlabeled fragments containing the first five type I repeats but not by unlabeled fragments containing the remaining seven type I repeats. Matrix assembly is therefore not a generalized property of type I repeats. Rather, a critical site is located within the first 29 kDa of fibronectin.
Insights
Fibronectin matrix assembly requires specific amino-terminal type I repeats, not all repeats. The critical binding site for matrix formation is located within the first 29 kDa of fibronectin.
Area of Science:
- Cell Biology
- Biochemistry
- Extracellular Matrix Research
Background:
- Fibronectin is crucial for organizing the extracellular matrix (ECM) into insoluble fibrils.
- Fibronectin matrix assembly involves specific domains, including the cell attachment site and regions within the N-terminal 70 kDa.
Purpose of the Study:
- To identify the specific fibronectin domains responsible for pericellular matrix assembly.
- To investigate the role of type I homology repeats in fibronectin matrix formation.
Main Methods:
- Development of a capture immunoassay to quantify insoluble fibronectin.
- Testing fibronectin fragments for their ability to inhibit matrix assembly.
- Studying the binding of radiolabeled fibronectin fragments to cell monolayers.
Main Results:
- Only fibronectin fragments containing the first five type I repeats inhibited matrix assembly.
- Sequences carboxyl-terminal to the first five type I repeats enhanced inhibitory activity.
- Cell lines incorporating fibronectin into a matrix specifically bound a 29 kDa fragment containing the first five type I repeats.
Conclusions:
- Fibronectin matrix assembly is mediated by a specific site within the N-terminal 29 kDa domain.
- This finding refines understanding of fibronectin's role in ECM organization and cell adhesion.